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Selected Publications and Presentations:
1. B. Stipe, R. Brockie, H. Richter, T. Matsumoto, T. Boone, R. Zakai, L. Huang, M. Staffaroni,
O. Mosendz, S. Pisana, G. Parker, J. Reiner, T. Santos, and O. Hellwig, “Optimizing
Thermally-Assisted Recording And FePt-Based Recording Media” IEEE Intermag 2013.
Tokyo, Japan April 2013.
2. T. Boone, D. Soltz, A. Kinkhabwala, G. Zapalac and M. Pinarbasi, “Optoelectronic Methods
for Characterizing Uniformity in CIGS Thin Film Solar Cells”, 38th
IEEE Photovoltaic
Specialist Conference June 3-8 2012, Austin, Texas.
3. M. Pinarbasi, S. Aksu, J. Freitag, T. Boone, H. Zolla, J. Vasquez, D. Nayak, E. Lee, T. Wang,
J. Abushama, B. Metin, “Roll to Roll Manufacturing of Flexible CIGS Cells and Panels” 25th
European Photovoltaic Solar Energy Conference and Exhibition / 5th World Conference
on Photovoltaic Energy Conversion, 6-10 September 2010, Valencia, Spain.
4. B. Stipe, T.Strand, C. Poon, H. Balamane, T. Boone, J. Katine, J. Li, V Rawat, H. Nemoto, A.
Hirotsune, O. Hellwig, R. Ruiz, E. Dobisz, D. Kercher, N. Robertson, T. Albrecht & B. Terris,
“Magnetic recording at 1.5 Pb m−2 using an integrated plasmonic antenna,” Nature Photonics
4, 484 - 488 (2010).
5. L. Folks, A. S. Troup, T. D. Boone, J. A. Katine, M. Nishioka, M. Grobis, G. J. Sullivan, A.
Ikhlassi, M. Field and B. A. Gurney, “Near-surface Nanoscale InAs Hall Cross sensitivity to
Localized Magnetic and Electric Fields” Journal of Physics: Condensed Matter v21 n25
(2009).
6. T. Boone, L. Folks, J. A. Katine, E. E. Marinero, N. Smith and B.A. Gurney, “Magnetic
Sensitivity in Mesoscopic EMR Devices in I-V-I-V Configuration,” IEEE Electron Device
Letters, VOL. 30, NO. 2, Feb. 2009.
7. (invited talk) T. D. Boone, L. Folks, J. Katine, E. Marinero. B, Gurney, “Mesoscopic
Extraordinary Magnetoresistance and the Effects of Impact Ionization and Velocity
Saturation,” IEEE Intermag 2008. Madrid, Spain, May 2008.
8. T. D. Boone, L. Folks, J. Katine, E. Marinero, S. Nicoletti, B, Gurney, M. Field, B. Brar, G.
Sullivan “Temperature dependence of Extraordinary Magentoresistance Devices,” IEEE
Transaction of Magnetics, v.42, n10, pp. 3270-3273. Oct. 2006.
9. T. D. Boone, L. Folks, J. Katine, E. Marinero, S. Nicoletti, B, Gurney, M. Field, B. Brar, G.
Sullivan “Temperature dependence of Extraordinary Magentoresistance Devices,” IEEE
Transaction of Magnetics, v.42, n10, pp. 3270-3273. Oct. 2006.
10. T. D. Boone, H. Tsukamoto and J. Woodall. “Intensity and Spatial Modulation of Spontaneous
Emission in GaAs By Field Aperture Selecting Transport,” Applied Physics Letters. May 12,
2003. (Selected for re-publication in June ’03 APS Virtual Journal on Ultrafast Science)
T.D. Boone; 2/4 pages
Issued Patents:
1. 8,587,897 Magnetic Field Sensor
2. 8,486,289 System, method and apparatus for fabricating a C-aperture or E-antenna plasmonic
near field source for thermal assisted recording applications
3. 8,379,495 System, method and apparatus for internal polarization rotation for horizontal cavity,
surface emitting laser beam for thermally assisted recording in disk drive
4. 8,213,271 System, method and apparatus for internal polarization rotation for horizontal
cavity, surface emitting laser beam for thermally assisted recording in disk drive
5. 8,169,881 Thermally assisted recording head having recessed waveguide with near field
transducer and methods of making same
6. 8,166,633 Method for manufacturing an extraordinary magnetoresistive (EMR) device with
novel lead structure
7. 8,092,704 System, method and apparatus for fabricating a c-aperture or E-antenna plasmonic
near field source for thermal assisted recording applications
8. 8,082,658 Controlled lapping for an ABS damascene process
9. 8,035,927 EMR magnetic sensor having its active quantum well layer extending beyond an
over-lying semiconductor layer end with tab and lead structure for improved electrical contact
10. 8,000,062 Enhanced magnetoresistance and localized sensitivity by gating in lorentz
magnetoresistors
11. 7,894,159 Perpendicular write head with independent trailing shield designs
12. 7,881,020 Extraordinary magnetoresistive (EMR) device with novel lead structure
13. 7,738,219 Narrow track extraordinary magneto resistive [EMR] device with wide voltage tabs
and diad lead structure
14. 7,508,635 Narrow track extraordinary magneto resistive [EMR] Device with wide voltage
tabs
15. 7,466,521 EMR structure with bias control and enhanced linearity of signal
16. 7,179,329 Methods of hyperdoping semiconductor materials and hyperdoped semiconductor
materials and devices
Fellowships and Awards:
• IBM Graduate Research Fellowship. (Yale University)
• Yale Engineering Becton Fellowship. (Yale University)
• Eastman Kodak Fellowship. (Purdue University)
• McDonnell Douglas Fellowship. (Purdue University)
References available upon request.

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Publication and Patent List

  • 1. Selected Publications and Presentations: 1. B. Stipe, R. Brockie, H. Richter, T. Matsumoto, T. Boone, R. Zakai, L. Huang, M. Staffaroni, O. Mosendz, S. Pisana, G. Parker, J. Reiner, T. Santos, and O. Hellwig, “Optimizing Thermally-Assisted Recording And FePt-Based Recording Media” IEEE Intermag 2013. Tokyo, Japan April 2013. 2. T. Boone, D. Soltz, A. Kinkhabwala, G. Zapalac and M. Pinarbasi, “Optoelectronic Methods for Characterizing Uniformity in CIGS Thin Film Solar Cells”, 38th IEEE Photovoltaic Specialist Conference June 3-8 2012, Austin, Texas. 3. M. Pinarbasi, S. Aksu, J. Freitag, T. Boone, H. Zolla, J. Vasquez, D. Nayak, E. Lee, T. Wang, J. Abushama, B. Metin, “Roll to Roll Manufacturing of Flexible CIGS Cells and Panels” 25th European Photovoltaic Solar Energy Conference and Exhibition / 5th World Conference on Photovoltaic Energy Conversion, 6-10 September 2010, Valencia, Spain. 4. B. Stipe, T.Strand, C. Poon, H. Balamane, T. Boone, J. Katine, J. Li, V Rawat, H. Nemoto, A. Hirotsune, O. Hellwig, R. Ruiz, E. Dobisz, D. Kercher, N. Robertson, T. Albrecht & B. Terris, “Magnetic recording at 1.5 Pb m−2 using an integrated plasmonic antenna,” Nature Photonics 4, 484 - 488 (2010). 5. L. Folks, A. S. Troup, T. D. Boone, J. A. Katine, M. Nishioka, M. Grobis, G. J. Sullivan, A. Ikhlassi, M. Field and B. A. Gurney, “Near-surface Nanoscale InAs Hall Cross sensitivity to Localized Magnetic and Electric Fields” Journal of Physics: Condensed Matter v21 n25 (2009). 6. T. Boone, L. Folks, J. A. Katine, E. E. Marinero, N. Smith and B.A. Gurney, “Magnetic Sensitivity in Mesoscopic EMR Devices in I-V-I-V Configuration,” IEEE Electron Device Letters, VOL. 30, NO. 2, Feb. 2009. 7. (invited talk) T. D. Boone, L. Folks, J. Katine, E. Marinero. B, Gurney, “Mesoscopic Extraordinary Magnetoresistance and the Effects of Impact Ionization and Velocity Saturation,” IEEE Intermag 2008. Madrid, Spain, May 2008. 8. T. D. Boone, L. Folks, J. Katine, E. Marinero, S. Nicoletti, B, Gurney, M. Field, B. Brar, G. Sullivan “Temperature dependence of Extraordinary Magentoresistance Devices,” IEEE Transaction of Magnetics, v.42, n10, pp. 3270-3273. Oct. 2006. 9. T. D. Boone, L. Folks, J. Katine, E. Marinero, S. Nicoletti, B, Gurney, M. Field, B. Brar, G. Sullivan “Temperature dependence of Extraordinary Magentoresistance Devices,” IEEE Transaction of Magnetics, v.42, n10, pp. 3270-3273. Oct. 2006. 10. T. D. Boone, H. Tsukamoto and J. Woodall. “Intensity and Spatial Modulation of Spontaneous Emission in GaAs By Field Aperture Selecting Transport,” Applied Physics Letters. May 12, 2003. (Selected for re-publication in June ’03 APS Virtual Journal on Ultrafast Science)
  • 2. T.D. Boone; 2/4 pages Issued Patents: 1. 8,587,897 Magnetic Field Sensor 2. 8,486,289 System, method and apparatus for fabricating a C-aperture or E-antenna plasmonic near field source for thermal assisted recording applications 3. 8,379,495 System, method and apparatus for internal polarization rotation for horizontal cavity, surface emitting laser beam for thermally assisted recording in disk drive 4. 8,213,271 System, method and apparatus for internal polarization rotation for horizontal cavity, surface emitting laser beam for thermally assisted recording in disk drive 5. 8,169,881 Thermally assisted recording head having recessed waveguide with near field transducer and methods of making same 6. 8,166,633 Method for manufacturing an extraordinary magnetoresistive (EMR) device with novel lead structure 7. 8,092,704 System, method and apparatus for fabricating a c-aperture or E-antenna plasmonic near field source for thermal assisted recording applications 8. 8,082,658 Controlled lapping for an ABS damascene process 9. 8,035,927 EMR magnetic sensor having its active quantum well layer extending beyond an over-lying semiconductor layer end with tab and lead structure for improved electrical contact 10. 8,000,062 Enhanced magnetoresistance and localized sensitivity by gating in lorentz magnetoresistors 11. 7,894,159 Perpendicular write head with independent trailing shield designs 12. 7,881,020 Extraordinary magnetoresistive (EMR) device with novel lead structure 13. 7,738,219 Narrow track extraordinary magneto resistive [EMR] device with wide voltage tabs and diad lead structure 14. 7,508,635 Narrow track extraordinary magneto resistive [EMR] Device with wide voltage tabs 15. 7,466,521 EMR structure with bias control and enhanced linearity of signal 16. 7,179,329 Methods of hyperdoping semiconductor materials and hyperdoped semiconductor materials and devices Fellowships and Awards: • IBM Graduate Research Fellowship. (Yale University) • Yale Engineering Becton Fellowship. (Yale University) • Eastman Kodak Fellowship. (Purdue University) • McDonnell Douglas Fellowship. (Purdue University) References available upon request.