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  1. Ph.D. in Physics , Colorado State University, Ft. Collins, Colorado , U.S.A. (1975-1979)
  2. M.S. in Physics , Colorado State University, Ft. Collins, Colorado , U.S.A. (1973-1975)
  3. ªF®ü¤j¾Çª«²z¨t¾Ç¤h (1967-1971 )
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  2. °ê¥ß¥æ³q¤j¾Ç¥ú¹q¤uµ{¾Ç¨t¨t¥D¥ô (8/2004 to 7/2006)
  3. °ê¥ß¥æ³q¤j¾Ç¥ú¹q¤uµ{¬ã¨s©Ò±Ð±Â (8/1987 to 1/2009)
  4. °ê¥ß¥æ³q¤j¾Ç¥ú¹q¤uµ{¬ã¨s©Ò©Òªø (8/1992 to 7/1995)
  5. °ê¥ß¥æ³q¤j¾Ç¥ú¹q¤uµ{¬ã¨s©Ò°Æ±Ð±Â (2/1981 to 7/1987)
  6. °ê¬ì·|¥ú¹q¾Çªù©Û¶°¤H (1/1996 to 12/1999)
  7. ­»´ä¤¤¤å¤j¾Ç¹q¤l¤uµ{¾Ç¨t³X°Ý±Ð±Â (1/2008 to 6/2008)
  8. ¤é¥»¤j¨Á¤j¾Ç¹p®g¤u¾Ç¬ã¨s©Ò«È­û±Ð±Â (3/2004 to 6/2004)
  9. ¬ü°ê¥[¦{¤j¾Ç¬f§JµÜ¤À®Õ³X°Ý¾ÇªÌ (2/1986 to 1/1987)
  10. ¬ü°ê¬ìù©Ô¦h¦{¥ß¤j¾Ç¤Æ¾Ç¨t³Õ¤h«á¬ã¨s­û (8/1979 to 1/1981)
  11. ¤¤µØ¥Á°ê®ü­x³°¾Ô¶¤¤Ö±L §L¤u©x (7/1971 to 6/1973)
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  2. °ê¬ì·|¯S¬ù¬ã¨s­û¡]1997-2002¡^
  3. °ê¬ì·|³Ç¥X¯S¬ù¬ã¨s­û¼ú¡]2002¡^
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  1. µØ¤H¥ú¹q¾Ç·|¡]Photonic Society of Chinese Americans, PSC¡^Fellow (1998)               Fellow citation: ¡§For his outstanding contribution in ultrafast optics and optoelectronics, in particular the development of dual wavelength lasers and GaAs:As+ photoconductors¡¨
  2. ´´³³´´ºaÅA¾Ç·|·|­û (1991¨´¤µ)
  3. ¦³«Ö¬ì§ÞÁ¿®y¡]³q°T¥ú¹q¡^¡]2003¡^
  4. ¬ü°ê¥ú¾Ç¾Ç·|¡]OSA, the Optical Society¡^Fellow (2004)Fellow Citation: ¡§For contributions to ultrafast optoelectronics, tunable and multi-wavelength lasers, leadership of optical and photonics research and education¡¨.
  5. °ê»Ú¥ú¾Ç¤uµ{¾Ç·|¡]International Society for Optical Engineering, SPIE¡^Fellow (2004) Fellow Citation: ¡§For contributions to ultrafast optoelectronics, tunable and multi-wavelength lasers, leadership of optical and photonics research and education¡¨.
  6. ¤¤µØ¥Á°ê¥ú¾Ç¤uµ{¾Ç·|¤uµ{¼ú³¹¡]2004¡^
  7. ¤¤µØ¥Á°êª«²z¾Ç·|·|¤h¡]2005¡^                                                                              Fellow Citation: ¡§¶W§Ö¹p®g»P¥ü»®ªiª«²z¤Î¤uÃÀ¤W¡A°^Äm¨ô¶V¡¨
  8. ¤¤°ê¤uµ{®v¾Ç·|³Ç¥X¤uµ{±Ð±Â¼ú¡]2006¡^
  9. ¼ï¤å²W¤å±Ð°òª÷·|¬ã¨s³Ç¥X¼ú (2007)
  10. »â¾É¾Ç³N°l¨D¨ô¶V¹Î¶¤¤Î¬ã¨s¦¨ªG¤J¿ï¡u¬ì¾Ç50¡v¡V°ê¬ì·|50¬ì¾Ç¦¨´N, 2008.
  11. .¬ü°êª«²z¾Ç·|¡]APS, American Physical Society¡^ Fellow (2009)
    Fellow Citation:
    ¡§
    For pioneering studies of the physics and technology of ion-planted semiconductor and liquid-crystal devices for ultrafast and THz applications, and for significant contributions toward developing tunable and ultrafast laser systems for applications in communications, sensing, spectroscopy and materials diagnostics and processing.¡¨.¡@
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  1. Laser Science  (¹p®g¬ì¾Ç)
  2. Ultrafast Optics and Optoelectronics (¶W§Ö¥ú¾Ç»P¥ú¹q¤l¾Ç)
  3. THz Optics and Photonics ¡]¥ü»®¥ú¾Ç»P¥ú¤l¾Ç¡^
  4. Liquid Crystal Optics and Photonics ¡]²G´¹¥ú¾Ç»P¥ú¤l¾Ç¡^
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Updated on January 3, 2010

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  1. F. Ganikhanov, G. -R. Lin, W. -C. Chen, C. -S. Chang, and Ci-Ling Pan, ¡§Subpicosecond carrier lifetimes in arsenic-ion-implanted GaAs,¡¨ Appl. Phys. Lett., vol. 67, No. 23, pp. 3465 - 3467, Dec. 4, 1995 (One of the first papers demonstrating the potential of GaAs:As+ as an ultrafast photoconductor, cited 51 times). See also, Gong-Ru Lin, Wen-Chung Chen, Shyh-Chin Chao, C.-S. Chang, Kaung-Hsiung Wu, T. M. Hsu, W. C. Lee, and Ci-Ling Pan ¡§Material and Ultrafast Optoelectronic Properties of Highly Resistive Arsenic-ion-implanted GaAs,¡¨ IEEE J. Quantum Electron., Vol. 34, No. 9, pp. 1740 - 1748, September, 1998.
  2. Chi-Leun Wang and Ci-Ling Pan, "Tunable Dual-wavelength Operation of a Diode Array with an External Grating-loaded Cavity", Appl. phys. Lett. Vol. 64, No. 23, pp. 3089 - 3091, June 6, 1994 (Generic laser cavity design for collinear, linearly polarized, tunable dual-wavelength output, cited 37 times). See also, Ci-Ling Pan and Chi-Luen Wang, ¡§A novel tunable dual-wavelength external-cavity laser diode array and its applications,¡¨ invited paper, Optical and Quantum Electronics Vol. 28, No. 10, pp. 1239 - 1257, October 1996.
  3. T. R. Tsai, C. Y. Chen, C.-L. Pan, R.-P. Pan and X.-C. Zhang, ¡§THz Time-Domain Spectroscopy Studies of the Optical Constants of the Nematic Liquid Crystal 5CB,¡¨ Appl. Opt., Vol. 42, No. 13, pp. 2372-2376, May 2003 (The first THz-TDS studies of nematic liquid crystal and shows that birefringence of NLC at THz frequencies is as large as that in the visible, thus opening possibilities of applications of LC in THz photonics. The paper was cited 35 times, the highest cited paper for liquid crystal and THz to date). See also, Ru-Pin Pan, Cho-Fan Hsieh, Ci-Ling Pan, and Chao Yuan Chen, ¡§Temperature-dependent optical constants and birefringence of nematic liquid crystal 5CB in the terahertz frequency range,¡¨ J. App. Phys., Vol. 103, No. 9, art. 093523, 1 May 2008.
  4. Chao-Yuan Chen, Tsong-Ru Tsai, Ci-Ling Pan, and Ru-Pin Pan, ¡§Room Temperature Terahertz Phase Shifter Based on Magnetically Controlled Birefringence in Liquid Crystals,¡¨ Appl. Phys. Lett., Vol. 83, No. 22, pp. 4497-4499, December 1, 2003 (The first room-temperature tunable THz phase shifter, cited 30 times to date). See also related work, Chao-Yuan Chen, Cho-Fan Hsieh, Yea-Feng Lin, Ru-Pin Pan, and Ci-Ling Pan, ¡§Magnetically Tunable Room-Temperature 2pp Liquid Crystal Terahertz Phase Shifter,¡¨ Opt. Express, Vol. 12, No. 12, pp. 2625-2630 June 14, 2004.
  5. Tze-An Liu, Masahiko Tani, and Makoto Nakajima, Ci-Ling Pan, ¡§Ultrabroadband terahertz field detection by photoconductive antennas based on multi-energy arsenic-ion-implanted GaAs and semi-insulating GaAs,¡¨ Appl. Phys. Lett., Vol. 83, No. 7, pp. 1322-1324, August 18 2003. (broadest reported to date for antennas fabricated on ion-implanted materials, cited 21 times to date) see also, ¡§Ultrabroadband terahertz field detection by photoconductive antennas based on proton-bombarded InP,¡¨ Opt. Express, Vol. 12, No.13, pp. 2954-2959, June 28, 2004.
  6.  Jia-Min Shieh, Zun-Hao Chen, Bau-Tong Dai, Yi-Chao Wang, Alexei Zaitsev, and Ci-Ling Pan, ¡§Near-Infrared Femtosecond Laser-induced Crystallization of Amorphous Silicon, ¡§Appl. Phys. Lett., Volume 85, Issue 7, pp. 1232-1234, August 16, 2004 (Demonstrated potential application of ultrafast athermal annealing for TFT applications, Taiwan patent, cited 19 times to date)..
  7. Chao-Kuei Lee, Jin-Yuan Zhang, J. Y. Huang and Ci-Ling Pan, ¡§Generation of Femtosecond Laser Pulses Tunable from 380 nm to 465 nm via Cascaded Nonlinear Optical Mixing in a Noncollinear Optical Parametric Amplifier with a Type-I Phase Matched BBO Crystal,¡¨ Opt. Express, Vol. 11, No. 14, pp. pp. 1702-1708, July 14 2003 (Femtosecond laser pulses that are tunable from 380 to 460 nm are directly generated the BBO crystal,.Taiwan and US patents, cited 8 times to date).
  8. Wei-Jan Chen, Jhi-Ming Hsieh, Shu Wei Huang, Hao-Yu Su, Chien-Jen Lai, Tsung-Ta Tang, Chuan-Hsien Lin, Chao-Kuei Lee, Ru-Pin Pan, Ci-Ling Pan, and A. H. Kung, ¡§Sub-Single-Cycle Optical Pulse Train with Constant Carrier Envelope Phase,¡¨ Phys. Rev. Lett., Vol. 100, art. 163906, April 25, 2008 (Attosecond pulses with bandwidth spanning from the near IR to XUV by phase locking seven Raman sidebands generated by molecular modulation in H2).
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