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Autocorrelation measurements of the FELBE free-electron laser and photocurrent saturation study in two-photon QWIPs

机译:FELBE自由电子激光的自相关测量和双光子QWIP中的光电流饱和研究

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摘要

The two-photon QWIP approach involves three equidistant subbands, two of which are bound in the quantum well, and the third state is located in the continuum. The intermediate subband induces a resonantly enhanced optical nonlinearity, which is about six orders of magnitude stronger than in usual semiconductors. Temporal resolution is only limited by the sub-ps intrinsic time constants of the quantum wells, namely the intersubband relaxation time and the dephasing time of the intersubband polarization. Both properties make this device very promising for pulse diagnostics of pulsed mid-infrared lasers. We have performed autocorrelation measurements of ps optical pulses from the free-electron laser (FEL) facility FELBE at the Forschungszentrum Dresden Rossendorf. Using a rapid-scan autocorrelation scheme at a scan frequency of 20 Hz, high-quality quadratic autocorrelation traces are obtained, yielding ratios close to the theoretically expected value of 8:1 between zero delay and large delay for interferometric autocorrelation, and 3:1 for intensity autocorrelation. Thus, two-photon QWIPs provide an excellent new technique for online pulse monitoring of the FEL. In addition, we have investigated the saturation mechanism of the photocurrent signal, which is due to internal space charges generated in the detector.
机译:双光子QWIP方法涉及三个等距子带,其中两个子带束缚在量子阱中,第三种状态位于连续体中。中间子带引起共振增强的光学非线性,该非线性比通常的半导体强大约六个数量级。时间分辨率仅受量子阱的亚ps固有时间常数限制,即子带间弛豫时间和子带间极化的移相时间。这两个特性使该设备非常有希望用于脉冲中红外激光的脉冲诊断。我们已经对位于德累斯顿德累斯顿Rossendorf的自由电子激光(FEL)设备FELBE的ps光脉冲进行了自相关测量。使用快速扫描自相关方案,以20 Hz的扫描频率,可获得高质量的二次自相关迹线,干涉比自相关的零延迟和大延迟之间的屈服比接近理论上的预期值8:1,而3:1强度自相关。因此,双光子QWIP为FEL的在线脉冲监测提供了一种出色的新技术。此外,我们研究了光电流信号的饱和机制,这是由于检测器中产生的内部空间电荷引起的。

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