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Theory and characterization of elliptically polarized modes in vertical-cavity surface-emitting lasers

机译:垂直腔表面发射激光器椭圆偏振模式的理论与表征

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The polarization of the beam emitted from telecom-wavelength vertical-cavity surface-emitting lasers (VCSELs) is studied in detail. Stokes parameters are extracted separately for the two polarization sub-modes of the fundamental spatial mode LP_(01). This characterization was performed at room temperature and for a significant number of devices. This led to the discovery of stable optical modes with a polarization that differs from the linear case. This crucial result was obtained without immersing the devices in an external magnetic field or driving them under external optical injection. In addition, the polarization can be tuned directly with the drive current. Moreover, the polarization handedness can be switched electrically. A theoretical investigation shows that some of the equations forming the basis of the spin-flip model should be reconsidered. In particular, a generalization of this theory is discussed and fantastic agreement is found with the experimental results. This work paves the way for a broad range of novel applications with the VCSEL technology, in particular for spintronics, bio-chemical sensing and telecommunication.
机译:详细地研究了从电信波长垂直腔表面发射激光器(VCSELS)发​​出的光束的偏振。 Stokes参数分别提取,用于基本空间模式LP_(01)的两个偏振子模式。该表征在室温下进行并进行大量设备进行。这导致了具有与线性壳体不同的极化的稳定光学模式。在不将器件浸入外部磁场中的情况下获得该关键结果或在外部光学喷射下驱动它们。另外,可以直接通过驱动电流调谐偏振。此外,可以电气变化而可以电动切换。理论上的研究表明,应重新考虑形成旋转式模型基础的一些等式。特别地,讨论了该理论的概括,并发现了实验结果的奇妙协议。这项工作为广泛的vcsel技术提供了广泛的新应用,特别是用于闪闪发光的闪蒸,生物化学传感和电信。

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