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Experimental analysis of temperature dependence of oscillation wavelength in quantum-well FP semiconductor lasers

机译:量子阱FP半导体激光器中振荡波长与温度的关系的实验分析

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We experimentally evaluated the temperature dependence of the oscillation wavelength in 1.3-/spl mu/m GaInAsP-InP strained multiple-quantum-well (MQW) semiconductor lasers compared to bulk lasers. The temperature dependence of the oscillation wavelength can be characterized by two newly introduced coefficients /spl alpha//sub 1/ and /spl alpha//sub 2/ which are the gain peak wavelength shift coefficients under the constant current condition and under the constant temperature condition, respectively. These two coefficients of various MQW structure lasers are the same as those of bulk lasers. This result means that the oscillation wavelength shift coefficient d/spl lambda//dT is only a function of the characteristic temperature T/sub 0/. The higher T/sub 0/ induces the large temperature dependence of the oscillation wavelength, When the characteristic temperature T/sub 0/ is equal to the characteristic temperature T/sub ltr/ of the transparency current I/sub tr/, the oscillation wavelength shift coefficient d/spl lambda//dT takes the maximum value which is determined by the thermally induced bandgap narrowing effect d/spl lambda//sub g//dT. One possibility to solve the paradox between a high characteristic temperature T/sub 0/ and the small temperature dependence of the oscillation wavelength is the introduction of the temperature-independent leakage current.
机译:我们通过实验评估了在1.3- / spl mu / m GaInAsP-InP应变多量子阱(MQW)半导体激光器中与体激光器相比,振荡波长对温度的依赖性。振荡波长的温度依赖性可以用两个新引入的系数/ spl alpha // sub 1 /和/ spl alpha // sub 2 /来表征,它们是在恒定电流条件下和恒定温度下的增益峰值波长漂移系数条件。各种MQW结构激光器的这两个系数与体激光器的相同。该结果意味着,振荡波长偏移系数d /splλ// dT仅是特征温度T / sub 0 /的函数。较高的T / sub 0 /引起振荡波长的大温度依赖性,当特征温度T / sub 0 /等于透明电流I / sub tr /的特征温度T / sub ltr /时,振荡波长位移系数d / splλ// dT取最大值,该最大值由热引起的带隙变窄效应d / sg // dT决定。解决高特征温度T / sub 0 /与振荡波长的温度依赖性小之间的矛盾的一种可能性是引入与温度无关的泄漏电流。

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