SlideShare a Scribd company logo
1 of 31
Download to read offline
Exploring the Universe
with Blue Waters
Brian O’Shea
Michigan State University
Image of Renaissance
Simulations, c/o NCSA
Advanced Vis. Lab
My charge: Review the impact of Blue
Waters on astronomical and space sciences
over the past five years.
(In 30 minutes, including Q&A)
Some questions:
1. Why do the fields of astronomy, astrophysics,
and space science desperately need large-
scale (and high-performance) computing?
2. Why is Blue Waters particularly awesome for
scientific challenges in these areas?
3. What science has been done on Blue Waters in
these fields?
Thank you to:
• All of the scientists who generously shared their
time, thoughts, plots, and animations for this talk
• Bill Kramer and the rest of the Blue Waters team
for their hard work and dedication
• The NSF for funding the Blue Waters project
• Funding and computing time for my research from
NSF, NASA, DOE, the GLCPC, and Michigan State
University
The need for HPC
Problems in astronomy, astrophysics, and space
science…
• Are often in physical regimes where you can’t do
experiments on Earth
• Are physically complex and involve huge
dynamical range
• Sometimes deal with huge numbers of objects
(of stars, galaxies, etc.)
How has Blue Waters contributed?
• The hardware is well-suited to these problems
• Lots of computing time: 25% of allocated Blue
Waters time has gone to astronomical and
space science
• Blue Waters Student Internship Program,
Graduate Fellowship Program, Petascale
Institute, and other educational and outreach
efforts (along with GLCPC and Shodor)
And now, the science!
(And pretty pictures,
and amazing movies!)
Earth and the Solar system
Image c/o NASA
Modeling the formation of the
terrestrial planets (Clement)
Gas giants
formed first
and stunted
Mars’ growth!
Space weather
• Combined MHD+Embedded PIC codes: first 3D global
studies of solar wind/magnetosphere interaction w/MHD
+kinetics (Toth/Manchester)
• Dissipation of turbulence in solar wind-like plasmas:
“SpectralPlasmaSolver” (Roytershteyn+)
• Global simulations of interaction of solar wind with the
interstellar medium (heliopause and heliotail), explanation
of Voyager 1 & 2 observations (Pogorelov, Bedford)
• 3D PIC simulations of the magnetic reconnection “x-line”
maximizes reconnection rate, with less turbulence than
expected (Liu+)
Magnetic fields at interface of solar wind
and local interstellar medium
Movie c/o
Nick
Pogorelov
Solar wind interacting with Earth’s magnetic field
Simulation: Karimabadi, Roytershteyn
Movie: NCSA Advanced Viz Lab
Stellar
Evolution
SN 1054
Image c/o NASA+ESA
Core-collapse supernovae
• Explored 3D morphology and behavior of
neutrino-driven supernova explosions in massive
stars (Burrows)
• Demonstrated that MRI can power hypernovae
by powering a large-scale dynamo (Mösta)
• Study of resolution dependence of turbulence in
Type II supernovae and its effect on explosion
mechanism (Lentz, Mösta, Ott, Radice)
Castro Type II SN
explosion (rotating)
Credit: Burrows
Supernova turbulence resolution study (c/o Mösta)
Reference
run
2x
resolution
4x
resolution
12x
resolution
Compact object mergers
• Blue Waters contributed to LIGO’s detection of a
neutron star binary merger through signal analysis
(Huerta/Haas)
• Generated hundreds of gravitational waveform
models for black hole binary mergers + surrogate
model for rapid fitting (Scheel + Teukolsky)
• First full GR-MHD simulations demonstrating that a
neutron star-black hole merger can create a jet
that triggers a gamma ray burst (Shapiro)
Binary neutron star merger (c/o NCSA Gravity Group,
Data Analytics & Viz Group)
Magnetic fields from GR+MHD simulations of
supermassive black holes + accretion disks
c/o Scott Noble
Optical emission from GR+MHD simulations of
supermassive black holes + accretion disks
c/o Scott Noble
Hydrogen
ingestion
c/o Paul
Woodward
Galaxy
formation
M31; image
c/o Robert Gendler
Super-Massive Black Holes
• The most massive black holes in the universe grow in
compact, spheroidal galaxies at high redshift
(DiMatteo)
• Stellar mass black holes are unlikely to be SMBH
progenitors, but there are plausible mechanisms for the
“direct collapse” scenario (O’Shea/Wise/Norman)
• First prediction of time scales for close SMBH pairs
following galaxy mergers (Quinn)
• “Zoom” galaxy simulations showing growth of SMBHs
by short bursts of accretion (Hopkins/Faucher-Giguère)
BlueTides: DiMatteo
BlueTides: DiMatteo
The Renaissance Simulations
Calculations: O’Shea/Wise/Norman
Visualization: NCSA Advanced Visualization Lab
FIRE simulations (Hopkins/Faucher-Giguère)
Multi-group radiation transport: reionization of H,
He in the intergalactic medium (Norman)
Multi-group radiation transport: reionization of H,
He in the intergalactic medium (Norman)
Cosmic ray-driven galactic outflows (Butsky)
Temp.
projection
Temp.
slice
Anisotropic CR diffusion CR streaming
Concluding thoughts
• Astronomical and space science relies on large-
scale computing to make progress
• Blue Waters has been a unique and indispensable
resource for these communities over the past five
years
• Fundamental advances have been made at all
scales, from the Earth’s magnetosphere to the
edge of the Universe!

More Related Content

What's hot

The Galaxy by Myrell Esteban (I Made)
The Galaxy by Myrell Esteban (I Made)The Galaxy by Myrell Esteban (I Made)
The Galaxy by Myrell Esteban (I Made)
RODELoreto MORALESson
 

What's hot (20)

The life of stars
The life of starsThe life of stars
The life of stars
 
Space junk
Space junkSpace junk
Space junk
 
Astronomy - State of the Art - Galaxies
Astronomy - State of the Art - GalaxiesAstronomy - State of the Art - Galaxies
Astronomy - State of the Art - Galaxies
 
Week Plan Sem Ii
Week Plan Sem IiWeek Plan Sem Ii
Week Plan Sem Ii
 
What we didn't know about astronomy
What we didn't know about astronomyWhat we didn't know about astronomy
What we didn't know about astronomy
 
The universe
The universeThe universe
The universe
 
Space Highlight 2005
Space Highlight 2005Space Highlight 2005
Space Highlight 2005
 
Univers
UniversUnivers
Univers
 
The Galaxy by Myrell Esteban (I Made)
The Galaxy by Myrell Esteban (I Made)The Galaxy by Myrell Esteban (I Made)
The Galaxy by Myrell Esteban (I Made)
 
BLACK HOLES ( peculiar object in space )
BLACK HOLES ( peculiar object in space )BLACK HOLES ( peculiar object in space )
BLACK HOLES ( peculiar object in space )
 
ÖNCEL AKADEMİ: SOLID EARTH GEOPHYSICS
ÖNCEL AKADEMİ: SOLID EARTH GEOPHYSICSÖNCEL AKADEMİ: SOLID EARTH GEOPHYSICS
ÖNCEL AKADEMİ: SOLID EARTH GEOPHYSICS
 
Quasa rs
Quasa rsQuasa rs
Quasa rs
 
Microgravity for students
Microgravity for studentsMicrogravity for students
Microgravity for students
 
Astronomy - Stat eof the Art - Cosmology
Astronomy - Stat eof the Art - CosmologyAstronomy - Stat eof the Art - Cosmology
Astronomy - Stat eof the Art - Cosmology
 
Spencer_AAS
Spencer_AASSpencer_AAS
Spencer_AAS
 
The Amazing Universe
The Amazing UniverseThe Amazing Universe
The Amazing Universe
 
Pluto Lesson
Pluto LessonPluto Lesson
Pluto Lesson
 
Mathematics patterns in the universe
 Mathematics patterns in the universe Mathematics patterns in the universe
Mathematics patterns in the universe
 
Ch 3 study guide 2012
Ch 3 study guide 2012Ch 3 study guide 2012
Ch 3 study guide 2012
 
Pre assessment
Pre assessmentPre assessment
Pre assessment
 

Similar to Exploring the Universe with Blue Waters

The Schwadron IBEX Ribbon Retention Theory and its possible Impact on Astrono...
The Schwadron IBEX Ribbon Retention Theory and its possible Impact on Astrono...The Schwadron IBEX Ribbon Retention Theory and its possible Impact on Astrono...
The Schwadron IBEX Ribbon Retention Theory and its possible Impact on Astrono...
Peter Palme 高 彼特
 
El Premio Nóbel de Física 2020
El Premio Nóbel de Física 2020 El Premio Nóbel de Física 2020
El Premio Nóbel de Física 2020
SOCIEDAD JULIO GARAVITO
 
Formation of low mass protostars and their circumstellar disks
Formation of low mass protostars and their circumstellar disksFormation of low mass protostars and their circumstellar disks
Formation of low mass protostars and their circumstellar disks
Sérgio Sacani
 
Extended Essay
Extended EssayExtended Essay
Extended Essay
Ethan Dodd
 
Jack Oughton - Galaxy Formation Journal 02.docx
Jack Oughton - Galaxy Formation Journal 02.docxJack Oughton - Galaxy Formation Journal 02.docx
Jack Oughton - Galaxy Formation Journal 02.docx
Jack Oughton
 
Highly siderophile elements_in_earth_mantle_as_a_clock_for_the_moon_forming_i...
Highly siderophile elements_in_earth_mantle_as_a_clock_for_the_moon_forming_i...Highly siderophile elements_in_earth_mantle_as_a_clock_for_the_moon_forming_i...
Highly siderophile elements_in_earth_mantle_as_a_clock_for_the_moon_forming_i...
Sérgio Sacani
 

Similar to Exploring the Universe with Blue Waters (20)

The Schwadron IBEX Ribbon Retention Theory and its possible Impact on Astrono...
The Schwadron IBEX Ribbon Retention Theory and its possible Impact on Astrono...The Schwadron IBEX Ribbon Retention Theory and its possible Impact on Astrono...
The Schwadron IBEX Ribbon Retention Theory and its possible Impact on Astrono...
 
Neven Bilic, "Dark Matter, Dark Energy, and Unification Models"
Neven Bilic, "Dark Matter, Dark Energy, and Unification Models"Neven Bilic, "Dark Matter, Dark Energy, and Unification Models"
Neven Bilic, "Dark Matter, Dark Energy, and Unification Models"
 
El Premio Nóbel de Física 2020
El Premio Nóbel de Física 2020 El Premio Nóbel de Física 2020
El Premio Nóbel de Física 2020
 
PCCC21 筑波大学計算科学研究センター 「学際計算科学による最新の研究成果」
PCCC21 筑波大学計算科学研究センター 「学際計算科学による最新の研究成果」PCCC21 筑波大学計算科学研究センター 「学際計算科学による最新の研究成果」
PCCC21 筑波大学計算科学研究センター 「学際計算科学による最新の研究成果」
 
Galaxy Forum Kansas 2013 - Nick Solomey
Galaxy Forum Kansas 2013 - Nick SolomeyGalaxy Forum Kansas 2013 - Nick Solomey
Galaxy Forum Kansas 2013 - Nick Solomey
 
Interpreting SDSS extragalactic data in the era of JWST
Interpreting SDSS extragalactic data in the era of JWSTInterpreting SDSS extragalactic data in the era of JWST
Interpreting SDSS extragalactic data in the era of JWST
 
The Sparkler: Evolved High-redshift Globular Cluster Candidates Captured by JWST
The Sparkler: Evolved High-redshift Globular Cluster Candidates Captured by JWSTThe Sparkler: Evolved High-redshift Globular Cluster Candidates Captured by JWST
The Sparkler: Evolved High-redshift Globular Cluster Candidates Captured by JWST
 
Gravitational lensing by_spinning_black_holes_in_astrophysics_and_in_the_movi...
Gravitational lensing by_spinning_black_holes_in_astrophysics_and_in_the_movi...Gravitational lensing by_spinning_black_holes_in_astrophysics_and_in_the_movi...
Gravitational lensing by_spinning_black_holes_in_astrophysics_and_in_the_movi...
 
Unraveling the Mysteries of Black Holes: Theories and Phenomena
Unraveling the Mysteries of Black Holes: Theories and PhenomenaUnraveling the Mysteries of Black Holes: Theories and Phenomena
Unraveling the Mysteries of Black Holes: Theories and Phenomena
 
AAS National Conference 2008: Jon Morse
AAS National Conference 2008: Jon MorseAAS National Conference 2008: Jon Morse
AAS National Conference 2008: Jon Morse
 
Masashi hazumi talk
Masashi hazumi talkMasashi hazumi talk
Masashi hazumi talk
 
Powehi EAO PPT from Director Paul Ho
Powehi EAO PPT from Director Paul HoPowehi EAO PPT from Director Paul Ho
Powehi EAO PPT from Director Paul Ho
 
Pawan Kumar Relativistic jets in tidal disruption events
Pawan Kumar	Relativistic jets in tidal disruption eventsPawan Kumar	Relativistic jets in tidal disruption events
Pawan Kumar Relativistic jets in tidal disruption events
 
The Schwadron Retention Theory
The Schwadron Retention Theory The Schwadron Retention Theory
The Schwadron Retention Theory
 
Formation of low mass protostars and their circumstellar disks
Formation of low mass protostars and their circumstellar disksFormation of low mass protostars and their circumstellar disks
Formation of low mass protostars and their circumstellar disks
 
American Astronomical Society plenary talk
American Astronomical Society plenary talkAmerican Astronomical Society plenary talk
American Astronomical Society plenary talk
 
Extended Essay
Extended EssayExtended Essay
Extended Essay
 
Jack Oughton - Galaxy Formation Journal 02.docx
Jack Oughton - Galaxy Formation Journal 02.docxJack Oughton - Galaxy Formation Journal 02.docx
Jack Oughton - Galaxy Formation Journal 02.docx
 
Highly siderophile elements_in_earth_mantle_as_a_clock_for_the_moon_forming_i...
Highly siderophile elements_in_earth_mantle_as_a_clock_for_the_moon_forming_i...Highly siderophile elements_in_earth_mantle_as_a_clock_for_the_moon_forming_i...
Highly siderophile elements_in_earth_mantle_as_a_clock_for_the_moon_forming_i...
 
Dragan Huterer "Novi pogledi na svemir"
Dragan Huterer "Novi pogledi na svemir"Dragan Huterer "Novi pogledi na svemir"
Dragan Huterer "Novi pogledi na svemir"
 

More from inside-BigData.com

Preparing to program Aurora at Exascale - Early experiences and future direct...
Preparing to program Aurora at Exascale - Early experiences and future direct...Preparing to program Aurora at Exascale - Early experiences and future direct...
Preparing to program Aurora at Exascale - Early experiences and future direct...
inside-BigData.com
 
Transforming Private 5G Networks
Transforming Private 5G NetworksTransforming Private 5G Networks
Transforming Private 5G Networks
inside-BigData.com
 
Biohybrid Robotic Jellyfish for Future Applications in Ocean Monitoring
Biohybrid Robotic Jellyfish for Future Applications in Ocean MonitoringBiohybrid Robotic Jellyfish for Future Applications in Ocean Monitoring
Biohybrid Robotic Jellyfish for Future Applications in Ocean Monitoring
inside-BigData.com
 
Machine Learning for Weather Forecasts
Machine Learning for Weather ForecastsMachine Learning for Weather Forecasts
Machine Learning for Weather Forecasts
inside-BigData.com
 
Energy Efficient Computing using Dynamic Tuning
Energy Efficient Computing using Dynamic TuningEnergy Efficient Computing using Dynamic Tuning
Energy Efficient Computing using Dynamic Tuning
inside-BigData.com
 
Versal Premium ACAP for Network and Cloud Acceleration
Versal Premium ACAP for Network and Cloud AccelerationVersal Premium ACAP for Network and Cloud Acceleration
Versal Premium ACAP for Network and Cloud Acceleration
inside-BigData.com
 
Introducing HPC with a Raspberry Pi Cluster
Introducing HPC with a Raspberry Pi ClusterIntroducing HPC with a Raspberry Pi Cluster
Introducing HPC with a Raspberry Pi Cluster
inside-BigData.com
 

More from inside-BigData.com (20)

Major Market Shifts in IT
Major Market Shifts in ITMajor Market Shifts in IT
Major Market Shifts in IT
 
Preparing to program Aurora at Exascale - Early experiences and future direct...
Preparing to program Aurora at Exascale - Early experiences and future direct...Preparing to program Aurora at Exascale - Early experiences and future direct...
Preparing to program Aurora at Exascale - Early experiences and future direct...
 
Transforming Private 5G Networks
Transforming Private 5G NetworksTransforming Private 5G Networks
Transforming Private 5G Networks
 
The Incorporation of Machine Learning into Scientific Simulations at Lawrence...
The Incorporation of Machine Learning into Scientific Simulations at Lawrence...The Incorporation of Machine Learning into Scientific Simulations at Lawrence...
The Incorporation of Machine Learning into Scientific Simulations at Lawrence...
 
How to Achieve High-Performance, Scalable and Distributed DNN Training on Mod...
How to Achieve High-Performance, Scalable and Distributed DNN Training on Mod...How to Achieve High-Performance, Scalable and Distributed DNN Training on Mod...
How to Achieve High-Performance, Scalable and Distributed DNN Training on Mod...
 
Evolving Cyberinfrastructure, Democratizing Data, and Scaling AI to Catalyze ...
Evolving Cyberinfrastructure, Democratizing Data, and Scaling AI to Catalyze ...Evolving Cyberinfrastructure, Democratizing Data, and Scaling AI to Catalyze ...
Evolving Cyberinfrastructure, Democratizing Data, and Scaling AI to Catalyze ...
 
HPC Impact: EDA Telemetry Neural Networks
HPC Impact: EDA Telemetry Neural NetworksHPC Impact: EDA Telemetry Neural Networks
HPC Impact: EDA Telemetry Neural Networks
 
Biohybrid Robotic Jellyfish for Future Applications in Ocean Monitoring
Biohybrid Robotic Jellyfish for Future Applications in Ocean MonitoringBiohybrid Robotic Jellyfish for Future Applications in Ocean Monitoring
Biohybrid Robotic Jellyfish for Future Applications in Ocean Monitoring
 
Machine Learning for Weather Forecasts
Machine Learning for Weather ForecastsMachine Learning for Weather Forecasts
Machine Learning for Weather Forecasts
 
HPC AI Advisory Council Update
HPC AI Advisory Council UpdateHPC AI Advisory Council Update
HPC AI Advisory Council Update
 
Fugaku Supercomputer joins fight against COVID-19
Fugaku Supercomputer joins fight against COVID-19Fugaku Supercomputer joins fight against COVID-19
Fugaku Supercomputer joins fight against COVID-19
 
Energy Efficient Computing using Dynamic Tuning
Energy Efficient Computing using Dynamic TuningEnergy Efficient Computing using Dynamic Tuning
Energy Efficient Computing using Dynamic Tuning
 
HPC at Scale Enabled by DDN A3i and NVIDIA SuperPOD
HPC at Scale Enabled by DDN A3i and NVIDIA SuperPODHPC at Scale Enabled by DDN A3i and NVIDIA SuperPOD
HPC at Scale Enabled by DDN A3i and NVIDIA SuperPOD
 
State of ARM-based HPC
State of ARM-based HPCState of ARM-based HPC
State of ARM-based HPC
 
Versal Premium ACAP for Network and Cloud Acceleration
Versal Premium ACAP for Network and Cloud AccelerationVersal Premium ACAP for Network and Cloud Acceleration
Versal Premium ACAP for Network and Cloud Acceleration
 
Zettar: Moving Massive Amounts of Data across Any Distance Efficiently
Zettar: Moving Massive Amounts of Data across Any Distance EfficientlyZettar: Moving Massive Amounts of Data across Any Distance Efficiently
Zettar: Moving Massive Amounts of Data across Any Distance Efficiently
 
Scaling TCO in a Post Moore's Era
Scaling TCO in a Post Moore's EraScaling TCO in a Post Moore's Era
Scaling TCO in a Post Moore's Era
 
CUDA-Python and RAPIDS for blazing fast scientific computing
CUDA-Python and RAPIDS for blazing fast scientific computingCUDA-Python and RAPIDS for blazing fast scientific computing
CUDA-Python and RAPIDS for blazing fast scientific computing
 
Introducing HPC with a Raspberry Pi Cluster
Introducing HPC with a Raspberry Pi ClusterIntroducing HPC with a Raspberry Pi Cluster
Introducing HPC with a Raspberry Pi Cluster
 
Overview of HPC Interconnects
Overview of HPC InterconnectsOverview of HPC Interconnects
Overview of HPC Interconnects
 

Recently uploaded

TrustArc Webinar - Unified Trust Center for Privacy, Security, Compliance, an...
TrustArc Webinar - Unified Trust Center for Privacy, Security, Compliance, an...TrustArc Webinar - Unified Trust Center for Privacy, Security, Compliance, an...
TrustArc Webinar - Unified Trust Center for Privacy, Security, Compliance, an...
TrustArc
 
“Iamnobody89757” Understanding the Mysterious of Digital Identity.pdf
“Iamnobody89757” Understanding the Mysterious of Digital Identity.pdf“Iamnobody89757” Understanding the Mysterious of Digital Identity.pdf
“Iamnobody89757” Understanding the Mysterious of Digital Identity.pdf
Muhammad Subhan
 
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptxHarnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
FIDO Alliance
 
Tales from a Passkey Provider Progress from Awareness to Implementation.pptx
Tales from a Passkey Provider  Progress from Awareness to Implementation.pptxTales from a Passkey Provider  Progress from Awareness to Implementation.pptx
Tales from a Passkey Provider Progress from Awareness to Implementation.pptx
FIDO Alliance
 

Recently uploaded (20)

ERP Contender Series: Acumatica vs. Sage Intacct
ERP Contender Series: Acumatica vs. Sage IntacctERP Contender Series: Acumatica vs. Sage Intacct
ERP Contender Series: Acumatica vs. Sage Intacct
 
Vector Search @ sw2con for slideshare.pptx
Vector Search @ sw2con for slideshare.pptxVector Search @ sw2con for slideshare.pptx
Vector Search @ sw2con for slideshare.pptx
 
Cyber Insurance - RalphGilot - Embry-Riddle Aeronautical University.pptx
Cyber Insurance - RalphGilot - Embry-Riddle Aeronautical University.pptxCyber Insurance - RalphGilot - Embry-Riddle Aeronautical University.pptx
Cyber Insurance - RalphGilot - Embry-Riddle Aeronautical University.pptx
 
Event-Driven Architecture Masterclass: Challenges in Stream Processing
Event-Driven Architecture Masterclass: Challenges in Stream ProcessingEvent-Driven Architecture Masterclass: Challenges in Stream Processing
Event-Driven Architecture Masterclass: Challenges in Stream Processing
 
Introduction to FIDO Authentication and Passkeys.pptx
Introduction to FIDO Authentication and Passkeys.pptxIntroduction to FIDO Authentication and Passkeys.pptx
Introduction to FIDO Authentication and Passkeys.pptx
 
TrustArc Webinar - Unified Trust Center for Privacy, Security, Compliance, an...
TrustArc Webinar - Unified Trust Center for Privacy, Security, Compliance, an...TrustArc Webinar - Unified Trust Center for Privacy, Security, Compliance, an...
TrustArc Webinar - Unified Trust Center for Privacy, Security, Compliance, an...
 
Working together SRE & Platform Engineering
Working together SRE & Platform EngineeringWorking together SRE & Platform Engineering
Working together SRE & Platform Engineering
 
Extensible Python: Robustness through Addition - PyCon 2024
Extensible Python: Robustness through Addition - PyCon 2024Extensible Python: Robustness through Addition - PyCon 2024
Extensible Python: Robustness through Addition - PyCon 2024
 
Design Guidelines for Passkeys 2024.pptx
Design Guidelines for Passkeys 2024.pptxDesign Guidelines for Passkeys 2024.pptx
Design Guidelines for Passkeys 2024.pptx
 
“Iamnobody89757” Understanding the Mysterious of Digital Identity.pdf
“Iamnobody89757” Understanding the Mysterious of Digital Identity.pdf“Iamnobody89757” Understanding the Mysterious of Digital Identity.pdf
“Iamnobody89757” Understanding the Mysterious of Digital Identity.pdf
 
Oauth 2.0 Introduction and Flows with MuleSoft
Oauth 2.0 Introduction and Flows with MuleSoftOauth 2.0 Introduction and Flows with MuleSoft
Oauth 2.0 Introduction and Flows with MuleSoft
 
2024 May Patch Tuesday
2024 May Patch Tuesday2024 May Patch Tuesday
2024 May Patch Tuesday
 
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptxHarnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
 
Google I/O Extended 2024 Warsaw
Google I/O Extended 2024 WarsawGoogle I/O Extended 2024 Warsaw
Google I/O Extended 2024 Warsaw
 
Tales from a Passkey Provider Progress from Awareness to Implementation.pptx
Tales from a Passkey Provider  Progress from Awareness to Implementation.pptxTales from a Passkey Provider  Progress from Awareness to Implementation.pptx
Tales from a Passkey Provider Progress from Awareness to Implementation.pptx
 
How to Check CNIC Information Online with Pakdata cf
How to Check CNIC Information Online with Pakdata cfHow to Check CNIC Information Online with Pakdata cf
How to Check CNIC Information Online with Pakdata cf
 
Event-Driven Architecture Masterclass: Integrating Distributed Data Stores Ac...
Event-Driven Architecture Masterclass: Integrating Distributed Data Stores Ac...Event-Driven Architecture Masterclass: Integrating Distributed Data Stores Ac...
Event-Driven Architecture Masterclass: Integrating Distributed Data Stores Ac...
 
WebRTC and SIP not just audio and video @ OpenSIPS 2024
WebRTC and SIP not just audio and video @ OpenSIPS 2024WebRTC and SIP not just audio and video @ OpenSIPS 2024
WebRTC and SIP not just audio and video @ OpenSIPS 2024
 
Portal Kombat : extension du réseau de propagande russe
Portal Kombat : extension du réseau de propagande russePortal Kombat : extension du réseau de propagande russe
Portal Kombat : extension du réseau de propagande russe
 
Long journey of Ruby Standard library at RubyKaigi 2024
Long journey of Ruby Standard library at RubyKaigi 2024Long journey of Ruby Standard library at RubyKaigi 2024
Long journey of Ruby Standard library at RubyKaigi 2024
 

Exploring the Universe with Blue Waters

  • 1. Exploring the Universe with Blue Waters Brian O’Shea Michigan State University Image of Renaissance Simulations, c/o NCSA Advanced Vis. Lab
  • 2. My charge: Review the impact of Blue Waters on astronomical and space sciences over the past five years. (In 30 minutes, including Q&A)
  • 3. Some questions: 1. Why do the fields of astronomy, astrophysics, and space science desperately need large- scale (and high-performance) computing? 2. Why is Blue Waters particularly awesome for scientific challenges in these areas? 3. What science has been done on Blue Waters in these fields?
  • 4. Thank you to: • All of the scientists who generously shared their time, thoughts, plots, and animations for this talk • Bill Kramer and the rest of the Blue Waters team for their hard work and dedication • The NSF for funding the Blue Waters project • Funding and computing time for my research from NSF, NASA, DOE, the GLCPC, and Michigan State University
  • 5. The need for HPC Problems in astronomy, astrophysics, and space science… • Are often in physical regimes where you can’t do experiments on Earth • Are physically complex and involve huge dynamical range • Sometimes deal with huge numbers of objects (of stars, galaxies, etc.)
  • 6. How has Blue Waters contributed? • The hardware is well-suited to these problems • Lots of computing time: 25% of allocated Blue Waters time has gone to astronomical and space science • Blue Waters Student Internship Program, Graduate Fellowship Program, Petascale Institute, and other educational and outreach efforts (along with GLCPC and Shodor)
  • 7. And now, the science! (And pretty pictures, and amazing movies!)
  • 8. Earth and the Solar system Image c/o NASA
  • 9. Modeling the formation of the terrestrial planets (Clement) Gas giants formed first and stunted Mars’ growth!
  • 10. Space weather • Combined MHD+Embedded PIC codes: first 3D global studies of solar wind/magnetosphere interaction w/MHD +kinetics (Toth/Manchester) • Dissipation of turbulence in solar wind-like plasmas: “SpectralPlasmaSolver” (Roytershteyn+) • Global simulations of interaction of solar wind with the interstellar medium (heliopause and heliotail), explanation of Voyager 1 & 2 observations (Pogorelov, Bedford) • 3D PIC simulations of the magnetic reconnection “x-line” maximizes reconnection rate, with less turbulence than expected (Liu+)
  • 11. Magnetic fields at interface of solar wind and local interstellar medium Movie c/o Nick Pogorelov
  • 12. Solar wind interacting with Earth’s magnetic field Simulation: Karimabadi, Roytershteyn Movie: NCSA Advanced Viz Lab
  • 14. Core-collapse supernovae • Explored 3D morphology and behavior of neutrino-driven supernova explosions in massive stars (Burrows) • Demonstrated that MRI can power hypernovae by powering a large-scale dynamo (Mösta) • Study of resolution dependence of turbulence in Type II supernovae and its effect on explosion mechanism (Lentz, Mösta, Ott, Radice)
  • 15. Castro Type II SN explosion (rotating) Credit: Burrows
  • 16. Supernova turbulence resolution study (c/o Mösta) Reference run 2x resolution 4x resolution 12x resolution
  • 17. Compact object mergers • Blue Waters contributed to LIGO’s detection of a neutron star binary merger through signal analysis (Huerta/Haas) • Generated hundreds of gravitational waveform models for black hole binary mergers + surrogate model for rapid fitting (Scheel + Teukolsky) • First full GR-MHD simulations demonstrating that a neutron star-black hole merger can create a jet that triggers a gamma ray burst (Shapiro)
  • 18. Binary neutron star merger (c/o NCSA Gravity Group, Data Analytics & Viz Group)
  • 19. Magnetic fields from GR+MHD simulations of supermassive black holes + accretion disks c/o Scott Noble
  • 20. Optical emission from GR+MHD simulations of supermassive black holes + accretion disks c/o Scott Noble
  • 23. Super-Massive Black Holes • The most massive black holes in the universe grow in compact, spheroidal galaxies at high redshift (DiMatteo) • Stellar mass black holes are unlikely to be SMBH progenitors, but there are plausible mechanisms for the “direct collapse” scenario (O’Shea/Wise/Norman) • First prediction of time scales for close SMBH pairs following galaxy mergers (Quinn) • “Zoom” galaxy simulations showing growth of SMBHs by short bursts of accretion (Hopkins/Faucher-Giguère)
  • 26. The Renaissance Simulations Calculations: O’Shea/Wise/Norman Visualization: NCSA Advanced Visualization Lab
  • 28. Multi-group radiation transport: reionization of H, He in the intergalactic medium (Norman)
  • 29. Multi-group radiation transport: reionization of H, He in the intergalactic medium (Norman)
  • 30. Cosmic ray-driven galactic outflows (Butsky) Temp. projection Temp. slice Anisotropic CR diffusion CR streaming
  • 31. Concluding thoughts • Astronomical and space science relies on large- scale computing to make progress • Blue Waters has been a unique and indispensable resource for these communities over the past five years • Fundamental advances have been made at all scales, from the Earth’s magnetosphere to the edge of the Universe!