论文标题

取消极化误差后,以高精度(<0.004 dB)测量的光学连接器的极化损失

Polarization-Dependent Loss of Optical Connectors Measured with High Accuracy (<0.004 dB) after Cancelation of Polarimetric Errors

论文作者

Noe, Reinhold, Koch, Benjamin

论文摘要

综述了最先进的偏振仪校准。产生许多准随机极化状态并移动/弯曲纤维而无需变化的功率,可以找到极化计的校准,使极化程度达到统一和寄生极化依赖性损失很小。可以表征使用偏振扰流器/变压器和偏光仪,可以表征设备以下测试的设备。它的Mueller矩阵可以分解成非应激性的Mueller-Jones矩阵的产物,纯粹是去极化的Mueller矩阵。测试极化可能会随着时间的流逝而漂移。借助光学开关,可以根据内部参考路径测量参考设备。后来,随着可能不同的测试极化,根据内部参考测量了实际测试的实际测试。因此,克服了极化漂移和重复参考设备测量的需求。当插入贴片时,只要通过光纤移动/弯曲对错误进行校准,就可以测量连接器PDL。在实验上,我们已经测量了误差<0.004 dB的PDL。这很容易就可以测量连接器PDL,这已被证明。当测试的设备是良好的偏振器时,测量PDL> 60 dB。使用LINBO3设备的20 mrad/s极化扰动器会产生测试极化。偏振仪可以以100 MHz采样,并可以存储64m的Stokes载体。在激光频率扫描过程中,可以在短至5的时间间隔内测量Mueller矩阵。

State-of-the-art polarimeter calibration is reviewed. Producing many quasi-random polarization states and moving/bending a fiber without changing power allows finding a polarimeter calibration where the degree-of-polarization reaches unity and parasitic polarization-dependent loss is small. Using a polarization scrambler/transformer and a polarimeter a device-under-test can be characterized. Its Mueller matrix can be decomposed into a product of a nondepolarizing Mueller-Jones matrix times a purely depolarizing Mueller matrix. Test polarizations may drift over time. With help of an optical switch the reference device can be measured against an internal reference path. Later, with possibly different test polarizations, the actual device-under-test is measured against the internal reference. Polarization drift and need for repeated reference device measurement are thus overcome. When a patchcord is inserted, connector PDL can be measured, provided that errors are calibrated away, again by fiber moving/bending. Experimentally we have measured PDL with errors <0.004 dB. This easily suffices to measure connector PDL, which is demonstrated. PDL >60 dB was measured when the device under test was a good polarizer. A 20 Mrad/s polarization scrambler with LiNbO3 device generates the test polarizations. The polarimeter can sample at 100 MHz and can store 64M Stokes vectors. During laser frequency scans Mueller matrices can be measured in time intervals as short as 5 us.

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