期刊文献+

强耦合激子-声子系统中的三阶非线性光学系数的理论计算 被引量:1

Theoretical Calculation of the Third Order Nonlinear Optical Properties in Strongly Coupled Exciton-Phonon Systems
下载PDF
导出
摘要 应用Dyson-Maleev变换,对强耦合激子—声子系统中非线性光学性质进行了理论研究.结果表明,当信号光场频率与激子频率的失谐量等于光学声子的频率时,系统的非线性光学吸收和克尔(Kerr)系数显著增大,从而证明了激子-声子的强相互作用对介质的非线性光学性质的影响相当大,并且当考虑激子偏离玻色子模型时,这种影响将进一步增大. The third order nonlinear optical properties in strongly coupled exciton-phonon systems are investigated theoretically. It is shown that as the signal field frequency detuning from the exciton frequency is equal to the optical phonon frequency the nonlinear optical absorptions and Kerr coefficient are enhanced significantly. The results also demonstrate that the phase-space filling effect has an evident impact on the nonlinear optical properties of the system.
出处 《光子学报》 EI CAS CSCD 北大核心 2005年第10期1480-1484,共5页 Acta Photonica Sinica
基金 国家自然科学基金(No.10274051) 上海市自然科学基金(No.03ZR14060)资助课题
关键词 非线性光学效应 克尔系数 激子 光学声子 相空间填充因子 Nonlinear optical effect~ Kerr coefficient~ Exciton~ Optical phonon Phase-space filling
  • 相关文献

参考文献20

  • 1Harris S E. Electromagnetically induced transparency.Physics Today, 1997,50(7) : 36~42
  • 2Lukin M D, Imamoglu A. Controlling photons using electromagnetically induced transparency. Nature, 2001,413(6853) : 273~276
  • 3Hau L V, Harris S E, Dutton Z, et al. Light speed reduction to 17 m/s in a ultracold atomic gas. Nature,1999, 397(6720): 594~598
  • 4Turukhin A V, Sudarshanam V S, Shahriar M S,et al.Observation of ultraslow and stored light in a solid. Phys RevLett, 2002, 88(2): 023602~023605
  • 5Schmidt H, Imamoglu A. Giant Kerr nonlinearities obtained by electromagnetically induced transparency.Opt Lett, 1996,21(2) : 1936~1939
  • 6Kuang L M, Chen G H, Wu Y S. Nonlinear optical properties of an electromagnetically induced transparency medium interacting with two quantized fields. J Opt B:Quant Semiclass Opt, 2003,5(4): 341 ~438
  • 7Wang H, Goorskey D, Xiao M. Dependence of enhanced kerr nonlinearity on coupling power in a three-level atomic system. Opt Lett, 2002,27(4): 258~260
  • 8Zubairy M S, Matsko A B, Scully M D. Resonant enhancement of high-order nonlin -earities based on atomic coherence. PhysRev A, 2002, 65(4): 043804~043807
  • 9Matsko A B, Rostovtsev Y V, Fleischhauer M,et al.Anomalous stimulated brillouin scattering via ultraslovw light. Phys Rev Lett, 2001,86(10) : 2006~2009
  • 10Agarwal G S. Electromagnetic-field-induced transparency in high-density exciton systems. Phys Rev A, 1995, 51(4): R2711~R2714

二级参考文献25

  • 1[1]Yablonovitch E. Inhibited spontaneous emission in solidstate physics and electronics .Phys Rev Lett, 1987,58(20):2059~2062
  • 2[2]John S. Strong localization of photons in certain disordered dielectric superlattices. Phys Rev Lett, 1987,58(23):2486~2489
  • 3[3]Jiang Y, Niu C, Lin D L. Resonance tunneling through photonic quantum well. Phys Rev(B), 1999,59(15): 9981~9986
  • 4[4]Qiao Feng, Zhang Chun, Wang Jun,et al. Photonic quantum-well structure: multiple channeled filtering phenomena. Appl Phys Lett, 2000,77(23): 3698~3700
  • 5[5]Yano S, Segawa Y, Bae J S, et al. Quantized state in a single quantum well structure of photonic crystals. Phys Rev(B), 2001,63(15): 153316-1~4
  • 6[7]Chen Wei, Mills D L. Optical response of nonlinear multiplayer structures: Bilayers and superlattices. Phys Rev(B), 1987,36(12):6269~6278
  • 7[8]Li Qiming, Chan C T, Ho K M,et al.Wave propagation in nonlinear photonic band-gap materials. Phys Rev(B), 1996,53(23): 15577~15585
  • 8[9]Lidorikis E, Li Qiming, Soukoulis C M. Wave propagation in nonlinear multiplayer structures.Phys Rev(B), 1996,54(15):10249~10252
  • 9[10]Liu Nianhua, Zhu Shiyao, Chen Hong. Localized electromagnetic modes of one-dimensional modulated nonlinear photonic band-gap structure. Phys Rev(B), 2001,64(15):165105-1~10
  • 10Gang Y, Wang J, McElvain J, et al. Large-area, full-color image sensors made with semiconducting polymers. Adv Mater, 1998 ,11 (10) : 1431 - 1434.

共引文献16

同被引文献22

  • 1杨希华.不同能量抽运场作用下瞬态电磁感应透明特性研究[J].中国激光,2004,31(7):811-814. 被引量:4
  • 2王彦华,王军民,闫树斌,刘涛,张天才.铯原子Λ型塞曼子能级结构中的电磁诱导透明[J].中国激光,2005,32(1):16-20. 被引量:3
  • 3Zhu Kadi, T. Kobayashi, Intrinsic self localized Frenkel excitons in a linear chain of interacting Frenkel excitons[J]. Phys. Lett.A, 1994, 196(12): 105-108
  • 4R. W. Boyd. Nonlinear Optics [M]. Boston: Academic, 1992.228-231
  • 5S. E. Harris. Electromagnetically induced transparency [J].Physics Today, 1997, 50(7), 36-42
  • 6M. D. Lukin, A. Imamoglu, Controlling photons using electromagnetically induced transparency [J]. Nature, 2001, 413(6853): 273-276
  • 7L. V. Hau, S. E. Harris, Z. Dutton et al.. Light speed reduction to 17 m/s in a ultracold atomic gas[J]. Nature, 1999,397(6720) : 594-598
  • 8A. V. Turukhin, V. S. Sudarshanam, M. S. Shahriar et al..Observation of ultraslow and stored light in a solid[J]. Phys.Rev. Lett., 2002, 88(2): 023602-023605
  • 9H. Schmidt, A. Imamoglu. Giant Kerr nonlinearities obtained by electromagnetically induced transparency [J]. Opt. Lett. ,1996, 21(2): 1936-1939
  • 10L. M. Kuang, G. H. Chen, Y. S. Wu. Nonlinear optical properties of an electromagnetically induced transparency medium interacting with two quantized fields[J]. J. Opt. B: Quant.Semiclass, Opt.,2003, 5(4): 341-438

引证文献1

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部