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Spin-controlled vertical cavity surface-emitting lasers

机译:自旋控制的垂直腔面发射激光器

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The output polarization of an optically pumped InGaAs/GaAs vertical cavity surface-emitting laser (VCSEL) is analyzed at room temperature as a function of the circular input polarization degree. The emission of the VCSEL is unambiguously controlled by the exciting polarization and only 30% of spin-polarized electrons are needed in the active region to generate an output polarization degree of up to 100% at short-pulsed pumping. This testifies that a VCSEL can be used as an effective amplifier for spin information even at room temperature. Measurements with a continuous wave excitation were executed to demonstrate the possibility of spin-amplification by electrical spin-injection in a VCSEL. All measurements were confirmed by a phenomenological spin flip model. Our paper is completed with the introduction of Fe/Tb-Multilayers used for spin injection. These contacts enable spin injection without external magnetic fields, i.e. in remanence. Finally, we suggest a combination of these multilayers with a VCSEL-structure to create the first spin-optoelectronic device working both at room temperature and without external fields.
机译:在室温下,根据圆形输入偏振度来分析光泵浦InGaAs / GaAs垂直腔表面发射激光器(VCSEL)的输出偏振。 VCSEL的发射受到激励极化的明确控制,并且在有源区中仅需要30%的自旋极化电子即可在短脉冲泵浦情况下产生高达100%的输出极化度。这证明即使在室温下,VCSEL也可以用作自旋信息的有效放大器。进行了连续波激励测量,以证明在VCSEL中通过电自旋注入进行自旋放大的可能性。所有测量均由现象学自旋翻转模型确认。通过引入用于自旋注入的Fe / Tb-多层膜,完成了本文。这些接触使得能够自旋注入而没有外部磁场,即剩磁。最后,我们建议将这些多层结构与VCSEL结构结合使用,以创建第一个在室温下且无外部场的情况下工作的自旋光电器件。

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