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Maxion Publications (2008 – present):
1. John L. Bradshaw, John D. Bruno, Kevin M. Lascola, Richard P. Leavitt, John T. Pham, Frederick J. Towner, David M. Sonnenfroh, and Krishnan R. Parameswaran, “Small low-power consumption CO-sensor for post-fire cleanup aboard spacecraft,” Proc. SPIE 8032, 80320D (2011).
4. John L. Bradshaw, John D. Bruno, Kevin M. Lascola, Gregory P. Meissner, John T. Pham, and Frederick J. Towner, “Interband cascade resonant cavity surface emitting LEDs for 2D-array scene projectors,” Proc. SPIE 7663, 76630C (2010).
5. Naresh C. Das and Frederick Towner, “Two color IR LED array,” Proc. SPIE 7663, 766308 (2010)
6. John L. Bradshaw, Richard L. Tober, John D. Bruno, Richard P. Leavitt, Kevin M. Lascola, Gregory P. Meissner, and John T. Pham, “Wavelength beam combined quantum cascade lasers for IRCM,” Proc. SPIE 7325, 73250K (2009).
7. Naresh C. Das, Fred Towner, and R. P. Leavitt, “Effects of indium mole fraction on LWIR light-emitting device performance,” Proc. SPIE 7301, 73010I (2009).
8. David N. Wells, “Compact photo-acoustic chemical sensor,” Proc. SPIE 7312, 73120R (2009).
12. John L. Bradshaw, John D. Bruno, Frederick J. Towner, Christi A. Shiner, John T. Pham, Sergey D. Suchalkin, and Gregory L. Belenky, “Development of a mid-infrared interband cascade LED array,” Proc. SPIE 6942, 69420G (2008).
Customer publications using Maxion lasers (2008 – present):
- J.D. Musgraves, N. Carlie, J. Hub, L. Petit, A. Agarwal, L.C. Kimerling, and K.A. Richardson, Clemson University, MIT, “Comparison of the optical, thermal and structural properties of Ge–Sb–S thin films deposited using thermal evaporation and pulsed laser deposition techniques,” Acta Materialia 59, 5032 (2011).
- G. Medhi, A. V. Muravjov, H. Saxena, C. J. Fredricksen, T. Brusentsova, and R. E. Pearle, U. Central Florida , Zyberwear, “Intracavity laser absorption spectroscopy using mid-IR quantum cascade laser,” Proc. SPIE 8032, 80320E (2011).
- Mark C. Phillips, Matthew S. Taubman, Bruce E. Bernacki, Bret D. Cannon, John T. Schiffern, and Tanya L. Myers, Pacific Northwest National Laboratory, “Design and performance of a sensor system for detection of multiple chemicals using an external cavity quantum cascade laser,” Proc. SPIE 7608, 76080D (2010).
- H. Nakagawa, Y. Kasaba, S. Aoki, I. Murata, H. Maezawa, S. Okano, H. Sagawa, and Y. Kasai, Tohoku University, Nagoya University, “High spectral resolution observations of Martian atmosphere in infrared-submillimeter range from ground-based instruments,” Geophys. Res. Abstracts 12, EGU2010-2010-1 (2010).
- D. M. Sonnenfroh, R. T. Wainner, and M. G. Allen (Physical Sciences, Inc.), “Interband cascade laser-based sensor for ambient CH4,” Opt. Eng. 49, 111118 (2010).
- M. T. Lwin (City College, City University of New York), “Performance modeling and validation of a chirped-pulse quantum cascade laser for open-path ambient gas monitoring,” Ph. D. Thesis (2010).
- R. A. Cendejas, M. C. Phillips, T. L. Myers, and M. S. Taubman (Pacific Northwest National Laboratory), “Single-mode, narrow-linewidth external cavity quantum cascade laser through optical feedback from a partial reflector,” Opt. Express 18, 26037 (2010).
- G. Sonnabend, M. Sornig, P. Krötz, D. Stupar, and R. Schieder, Universityät zu Köln, “Ultra high resolution observations of planetary atmospheres using the Cologne tuneable heterodyne infrared spectrometer,” J. Quant. Spectrosc. Radiat. Tranfer 109, 1016 (2008).
- Mark C. Phillips and Nicolas Hô, Pacific Northwest National Laboratory, “Infrared hyperspectral imaging using a broadly tunable external cavity quantum cascade laser and microbolometer focal plane array,” Opt. Express 16, 1836 (2008).
