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Wavelength Bistability and Switching in Two-Section Quantum-Dot Diode Lasers

机译:两节量子点二极管激光器的波长双稳态和开关

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摘要

We report lasing wavelength bistability with respect to applied bias on the saturable absorbers in two-section mode-locked quantum dot lasers. We show data from three different devices exhibiting wavelength bistability. All lasers display wavelength bistability. Only one lasing wavelength is present at a time, with all other wavelengths totally quenched. The switchable ranges (the wavelength difference between two bistable lasing branches) are different for all three lasers and in one device can be manipulated by changing the current injection. All lasers show the remarkable property of switching only in integer multiples of about 8 nm. The bistable operation can be explained by the interplay of the cross-saturation and self-saturation properties in gain and absorber, and the quantum-confined Stark effect in absorber. The measured switching time between bistable wavelengths is 150 $~$ps.
机译:我们报告了在两节锁模量子点激光器中可饱和吸收体上施加的偏光的激光波长双稳性。我们显示了来自三个显示波长双稳性的不同设备的数据。所有激光器都显示出波长双稳态。一次仅存在一个激光发射波长,而所有其他波长则完全熄灭。对于所有三个激光器,可切换范围(两个双稳态激光分支之间的波长差)均不同,并且在一个设备中,可以通过更改电流注入来控制该范围。所有激光器都显示出仅以约8 nm的整数倍进行切换的显着特性。双稳态操作可以通过增益和吸收器中的交叉饱和和自饱和特性以及吸收器中的量子限制斯塔克效应的相互作用来解释。在双稳态波长之间测得的切换时间为150 $〜$ ps。

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