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Improvement in the calculation of anti-Stokes energy transfer and experimental justification based on Er0.01YbxY1 - 0.01 - xVO4 crystal
Authors:Chen Xiao-Bo  Lu Jian  Zhang Yun-Zhi  Xu Xiao-Ling  Feng Bao-Hu  Wang Ce  Gregory J. Salamo  Yang Guo-Jian
Affiliation:Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China; Nuclear Science & Technology School and Analytical Testing Center, Applied Optics Beijing Area Major Laboratory, Beijing Normal University, Beijing 100875, China; University Arkansas, Department of Physics, Fayetteville, AR 72701, USA
Abstract:The improvement on the calculation of anti-Stokes energy transfer rate is studied in the present work. The additional proportion coefficient between Stokes and anti-Stokes light intensities of quantum Raman scattering theory as compared with the classical Raman theory is introduced to successfully describe the anti-Stokes energy transfer. The theoretical formula for the improvement on the calculation of anti-Stokes energy transfer rate is derived for the first time in this study. The correctness of introducing coefficient exp{ΔE / kT} from well-known Raman scatter theory is demonstrated also. Moreover, the experimental lifetime measurement in Er0.01YbxY1 - 0.01 - xVO4 crystal is performed to justify the validity of our important improvement in the original phonon-assisted energy transfer theory for the first time.
Keywords:improvement of anti-Stokes energy transfer  Raman scattering quantum and classical theory  Er0.01YbxY1 - 0.01 - xVO4 crystal
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