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Polarization dynamics in spin-polarized vertical-cavity surface-emitting lasers

机译:自旋偏振垂直腔面发射激光器的偏振动力学

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Spin-polarized lasers and especially spin-polarized vertical-cavity surface-emitting lasers (spin-VCSELs) are attractive novel spintronic devices providing functionalities and characteristics superior to their conventional purely charge-based counterparts. This applies in particular to ultrafast dynamics, modulation capability and chirp control of directly modulated lasers. Here we demonstrate that ultrafast oscillations of the circular polarization degree can be generated in VCSELs by pulsed spin injection which have the potential to reach frequencies beyond 100 GHz. These oscillations are due to the coupling of the carrier-spin-photon system via the optical birefringence for the linearly polarized laser modes in the micro-cavity and are principally decoupled from conventional relaxation oscillations of the carrier-photon system. Utilizing these polarization oscillations is a very promising path to ultrafast directly modulated spin-VCSELs in the near future as long as an effective concept can be developed to modulate or switch these polarization oscillations. After briefly reviewing the state of research in the emerging field of spin-VCSELs, we present a novel concept for controlled switching of polarization oscillations by use of multiple optical spin injection pulses. Depending on the amplitude and phase conditions of the excitation pulses, constructive or destructive interference of polarization oscillations leads to an excitation, stabilization or switch-off of these oscillations. Furthermore even short single polarization bursts can be generated with pulse widths only limited by the resonance frequency of the polarization oscillation. Consequently, this concept is an important building block for using spin controlled polarization oscillations for future communication applications.
机译:自旋偏振激光器,特别是自旋偏振垂直腔表面发射激光器(spin-VCSEL)是有吸引力的新型自旋电子器件,其功能和特性优于其传统的基于纯电荷的同类器件。这尤其适用于直接调制激光器的超快动力学,调制能力和线性调频控制。在这里,我们证明了通过脉冲自旋注入可以在VCSEL中产生圆极化度的超快振荡,其潜在可能达到100 GHz以上的频率。这些振荡是由于载流子-自旋光子系统通过微腔中线性偏振激光模式的光学双折射耦合而产生的,并且主要与载流子-光子系统的常规张弛振荡解耦。只要可以开发出一种有效的方案来调制或切换这些极化振荡,利用这些极化振荡在不久的将来是超快直接调制自旋VCSEL的非常有前途的途径。在简要回顾了自旋VCSEL新兴领域的研究状况之后,我们提出了一种通过使用多个光学自旋注入脉冲来控制偏振振荡的新颖概念。取决于激励脉冲的幅度和相位条件,极化振荡的相长或相消干涉导致这些振荡的激励,稳定或关闭。此外,即使仅由偏振振荡的谐振频率限制的脉冲宽度也可以产生短的单个偏振猝发。因此,该概念是将自旋控制极化振荡用于未来通信应用的重要基础。

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