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Parametric amplification and dispersion characteristics of optical phonon mode in a semiconductor magnetoplasma

机译:半导体磁磁体中光学声子模式的参数放大和色散特性

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Using the classical hydrodynamic model of semiconductor plasmas, the parametric amplification and dispersion characteristics of optical phonon mode in a semiconductor magnetoplasma are investigated analytically. An expression for effective complex second-order optical susceptibility ($chi^{(2)}_e=(chi^{(2)}_e)_r+ chi^{(2)}_e)_i)$ is obtained under off-resonant laser irradiation. The analysis deals with qualitative behaviour of threshold pump amplitude($xi_{0,m{th}}$) for the onset of parametric excitation, anomalous parametric dispersion (via $(xi^{(2)}_e)_r)$ and parametric gain coefficient ($g_{m{para}}$ via ($(xi^{(2)}_e)_i)$ with respect to externally applied magnetostatic field ($B_0$) for different values of doping concentration ($n_0$). Numerical estimates are made for n-InSb–CO$_2$ laser system at 77 K. The analysis offers three achievable resonance conditions at which $xi_{0,m{th}}$ reduces whereas $g_{m{para}}$ enhances by two orders of magnitude. The lowering in $xi_{0,m{th}}$ and enhancement in $g_{m{para}}$, under proper selection of $B_0$ and $n_0$, confirms the chosen nonlinear medium as a potential candidate material for the fabrication of efficient optical parametric amplifiers. The negative and positive enhanced parametric dispersion may be of potential use in the study of squeezed state generation as well as in group velocity dispersion in semiconductor magnetoplasmas.
机译:使用半导体等离子体的经典流体动力学模型,分析地研究了半导体磁磁体成像磁性化磁体成型中的光学声子模式的参数放大和色散特性。有效复杂二阶光学敏感性的表达($ chi ^ {(2)} _ e =( chi ^ {(2)} _ _ _ e)_r + chi ^ {(2)} _ e)_i)$脱谐激光辐照。分析处理参数激励的阈值泵幅度的定性行为($ xi_ {0, rm {th}} $),用于参数激励,异常参数色散(通过$( xi ^ {(2)} _ e)_r )$和参数增益系数($ g _ { {rm {para}} $通孔($( xi ^ {(2)} _ e)_i)$关于外部应用的磁场($ b_0 $)以获得不同的值掺杂浓度($ n_0 $)。数值估计是针对77 K的N-INSB-CO $ _2 $激光系统进行的数值估计。分析提供了三个可实现的共振条件,其中$ xi_ {0, rm {th}} $减少虽然$ g _ { { {para}} $增强了两个数量级。$ xi_ {0, rm {th}} $和g _ { rm {para}} $的增强率下降选择$ B_0 $和$ N_0 $,确认所选择的非线性介质作为制造有效的光学参数放大器的潜在候选材料。负增强的参数分散可能在挤压状态等的研究中可能使用与群体Velocit一样在半导体磁化物中的y分散。

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