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Physics & Astronomy

Michael Ware

Articles

  1. M. Turner, N. Brimhall, M. Ware, and J. Peatross, "Simulated laser-pulse evolution for high-order harmonic generation in a semi-infinite gas cell," Opt. Express, 16, 1571-1576 (2008). [URL]
  2. M. Turner, N. Brimhall, M. Ware, and J. Peatross, Reply to Comment on "Direct observation of laser filamentation in high-order harmonic generation," Opt. Lett. 32, 2709-2710 (2007). [URL]
  3. N. Brimhall, J. C. Painter, N. Powers, G. Giraud, M. Turner, M. Ware, and J. Peatross, "Measured laser-beam evolution during high-order harmonic generation in a semi-infinite gas cell," Opt. Express 15, 1684-1689 (2007). [URL]
  4. J. Cheung, J. L. Gardner, A. Migdall, S. Polyakov, M. Ware, "High accuracy dual lens transmittance measurements," Appl. Opt. 46, 5396-5403 (2007). [URL]
  5. S. Glasgow, M. Meilstrup, J. Peatross, and M. Ware, "Real-time recoverable energy allocation in dispersive dielectrics," Phys. Rev. E 75, 016616 (2007). [URL]
  6. M. Ware, A. Migdall, J. Bienfang, S. V. Polyakov, "Calibrating photon-counting detectors to high accuracy: background and deadtime issues," J. Mod. Optics 54, 361-372 (2007). [URL]
  7. J. Painter, M. Adams, N. Brimhall, E. Christiansen, G. Giraud, N. Powers, M. Turner, M. Ware, and J. Peatross, "Direct Observation of Laser Filamentation in High-Order Harmonic Generation," Opt. Lett. 31, 3471-3473 (2006). [URL]
  8. S. V. Polyakov, M Ware, and A. Migdall, "High Accuracy Calibration of Photon-Counting Detectors," Proc. SPIE,  6372, 15 (2006). [URL]
  9. S. Castelletto, I. P. Degiovanni, G. Furno, V. Schettini, A. Migdall, and M. Ware, "Two-Photon Mode Preparation and Matching Efficiency: Definition, Measurement, and Optimization," IEEE T. Instrum. Meas. 54, 890-893 (2005). [URL]
  10. I. P. Degiovanni, S. Castelletto, M. Ware, and A. Migdall, "On the Measurement of Two-Photon Single Mode Coupling Efficiency in PDC Photon Sources," New J. Phys. 6, 87 (2004). [URL]
  11. M. Ware and A. Migdall, "Single-Photon Detector Calibration Using Correlated Photons: The March From Feasibility to Metrology," J. Mod. Optics 51, 1549–1557 (2004). [URL]
  12. S. Castelletto, I. P. Degiovanni, A. Migdall, V. Schettinib, M. Ware, "Measurement of Coupling PDC photon sources with single-mode and multimode optical fibers," in SPIE Conf. on Quantum Communications and Quantum Imaging II, Denver, CO, Aug. 4-6, 2004, Proc. SPIE 5551, 60-72, (2004). [URL]
  13. S. Castelletto, I. Degiovanni, M. Ware, A. Migdall, "Coupling Efficiencies in Single Photon On-Demand Sources" Proc. SPIE 5161, 48–56 (2004). URL
  14. A. Migdall, D. Branning, S. Castelletto, and M.Ware, "A Single Photon On-Demand Source with Decoupled Single and Multiphoton Probabilities," Proc. 6th International Conference on Quantum Communications Measurement and Computing, Rinton Press p. 528–531 (2003).
  15. A. Migdall, S. Castelletto, and M. Ware, "Status of Multiplexed Single Photon On-Demand Source," Proc. SPIE 5105, 294–302 (2003). [URL]
  16. M. Ware, S. Glasgow and J. Peatross, "Group Delay Context for Broadband Pulses," Ultra-Wideband Short-Pulse Electromagnetics 6, Ed. E. Mokole, M. Kragalott, and K. Gerlach, pp. 1–9, Plenum: New York, (2003).
  17. A. L. Migdall, D. Branning, S. Castelletto and M.Ware, "Single Photon Source with Individualized Single Photon Certifications," Proc. SPIE 4821, 455–465, (2002). (also published at quant-ph/0209103) [URL]
  18. M. Ware, S. A. Glasgow, and J. Peatross, "The Role of Group Velocity in Tracking Field Energy in Linear Dielectrics" Opt. Express 9, 506-518 (2001). [URL]
  19. M. Ware, S. A. Glasgow, and J. Peatross, "Energy Transport in Linear Dielectrics," Opt. Express 9, 519-532 (2001). [URL]
  20. S. A. Glasgow, M. Ware, and J. Peatross, "Poynting’s Theorem and Luminal Energy Transport Velocity in Causal Dielectrics," Phys. Rev. E 64, 046610 (2001). [URL]
  21. J. Peatross, M.Ware, and S. A. Glasgow, "The Role of the Instantaneous Spectrum on Pulse Propagation in Causal Linear Dielectrics," J. Opt. Soc. of Am. A 18, 1719-1725 (2001). [URL]
  22. M. Ware, W. E. Dibble, S. A. Glasgow, and J. Peatross, "Energy Flow in Angularly Dispersive Optical Systems," J. Opt. Soc. of Am. B 18, 839-845 (2001). [URL]
  23. J. Peatross, S. A. Glasgow, and M. Ware, "Average Energy Flow of Optical Pulses in Dispersive Media," Phys. Rev. Lett. 84, 2370 (2000). [URL]

Books

J. Peatross and M. Ware, Physics of Light and Optics.

Optical Radiometry, Vol. 41 of Experimental Methods in the Physical Sciences, Ed. Parr, Datla, and Gardner, Elsevier Academic Press, New York, 263–271 (2005). (Section on parametric downconversion in radiometry)

 
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