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Observations of transient nonlinear optical effects on reflection from opaque media and novel polarisation phenomena in crystals

机译:瞬态非线性光学效应对不透明介质反射和晶体中新型偏振现象的观察

摘要

The degenerate cubic optical nonlinearity of an indium-glass interface in the vicinity of the melting point has been measured for the first time at 1260 nm using a spectroscopic technique based on the pump probe specular inverse Faraday effect. A considerable enhancement of the nonlinearity was observed approaching the melting point from below with a magnitude of 6.3 x 10-7 e.s.u. (8.8 x 10-15 m2Volt-2) The nonlinear response was faster than 90 fs. Away from the melting the nonlinearity is attributed to the spin flipping mechanism. Near the melting point it is associated with weakly bound highly unharmonic electrons.An optical nonlinearity of a gallium dielectric interface has been used to achieve a broadband light by light control at milliwatt power levels. The broadband optical nonlinearity of an alpha-gallium-dielectric interface is shown to enhance near the bulk melting point (30°). The magnitude of the nonlinearity is ~1 e.s.u. (1.4x10-8 m2Volt-2). The nonlinear response was found to have various components ranging from at least in the micro to nanosecond range. Up to a 30% modulation of a probe beam in reflected light intensity has been observed. In a fiberised architecture the nonlinearity is exploited to make an optical switch at 1.5 µm. Cross wavelength switching is also presented at 1.3 µm and 1.5 µm where the modulation in reflected light exceeded 40% with dynamics of ~140ns. Based on the same nonlinearity a new passive self-starting Q-switching ring laser is presented. The pulse duration is ~1.5 µs with peak powers exceeding 100mW. The nonlinearity is attributed to the metallisation and recrystallisation velocities of gallium.The nonreciprocity of natural polarisation has been observed in the optically active crystal Bi(12)SiO(20) at 632.8, 514.5, 501.7, 496.5, 476.5, and 457.9 nm. A nonreciprocal component of the polarisation rotation of 2 x 10-3 radians was detected on the background of the polarisation rotation due to conventional optical activity. The nonreciprocal rotation has been attributed to the presence of the symmetric part of the nonlocality tensor Re[gamma,xyz + gamma,xyz] ~ 5 x 10-12 cm at 457.9 nm. The giant birefringence (0.03 dn 0.3) due to the quadratic term in the constitutive equation for ZnSe along the [110] direction in the excitonic region in reflection was measured for the first time. Using this effect a reflective configuration technique for studying crystallographic domains in cubic crystals has been developed.
机译:使用基于泵探针镜面反法拉第效应的光谱技术,在1260 nm处首次测量了熔点附近铟-玻璃界面的简并立方光学非线性。观察到从下方以6.3×10-7e.s.u的幅度接近熔点,非线性度显着增强。 (8.8 x 10-15 m2Volt-2)非线性响应快于90 fs。除了熔化之外,非线性还归因于自旋翻转机制。在熔点附近,它与弱束缚的高度非谐电子相关。镓电介质界面的光学非线性已被用于通过在毫瓦功率水平上进行光控制来实现宽带光。示出了α-镓-电介质界面的宽带光学非线性在本体熔点(30°)附近增强。非线性度约为1e.s.u。 (1.4x10-8 m2Volt-2)。发现非线性响应具有至少在微秒至纳秒范围内的各种分量。已经观察到探测光束的反射光强度的调制高达30%。在纤维化架构中,利用非线性来制造1.5 µm的光开关。交叉波长切换也出现在1.3 µm和1.5 µm处,其中反射光的调制超过40%,动态约为140ns。基于相同的非线性,提出了一种新型的无源自启动调Q环形激光器。脉冲持续时间约为1.5 µs,峰值功率超过100mW。非线性归因于镓的金属化和再结晶速度。已在632.8、514.5、501.7、496.5、476.5和457.9 nm的光学活性晶体Bi(12)SiO(20)中观察到自然极化的不可逆性。由于常规的光学活动,在偏振旋转的背景上检测到2 x 10-3弧度的偏振旋转的不可逆分量。不可逆旋转归因于在457.9 nm处存在非局部张量Re [γ,xyz + gamma,xyz]〜5 x 10-12 cm的对称部分。首次测量了ZnSe的本构方程中沿[110]方向在反射的激子区域中的二次项所引起的巨型双折射(0.03

著录项

  • 作者

    Dhanjal Sukhminder J.;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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