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A two-band approach to nλ phase error corrections with LBTI's PHASECam

机译:使用LBTI的Phasecam进行Nλ相位误差校正的双频方法

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PHASECam is the Large Binocular Telescope Interferometer's (LBTI) phase sensor, a near-infrared camera which is used to measure tip/tilt and phase variations between the two AO-corrected apertures of the Large Binocular Telescope (LBT). Tip/tilt and phase sensing are currently performed in the H (1.65 μm) and K (2.2 μm) bands at 1 kHz, and the K band phase telemetry is used to send tip/tilt and Optical Path Difference (OPD) corrections to the system. However, phase variations outside the range [-π, π] are not sensed, and thus are not fully corrected during closed-loop operation. PHASECam's phase unwrapping algorithm, which attempts to mitigate this issue, still occasionally fails in the case of fast, large phase variations. This can cause a fringe jump, in which case the unwrapped phase will be incorrect by a wavelength or more. This can currently be manually corrected by the observer, but this is inefficient. A more reliable and automated solution is desired, especially as the LBTI begins to commission further modes which require robust, active phase control, including controlled multi-axial (Fizeau) interferometry and dual-aperture non-redundant aperture masking interferometry. We present a multi-wavelength method of fringe jump capture and correction which involves direct comparison between the K band and currently unused H band phase telemetry.
机译:PHASECam是大双筒望远镜干涉仪的(LBTI)相传感器,其用于测量大双筒望远镜(LBT)的两个AO-校正孔之间尖/倾斜和相位的变化的近红外线照相机。尖/倾斜和相位的感测在H(1.65微米)和K(2.2微米),在1kHz的频带正在执行,并且K个频带相遥测用于尖端/倾斜和光程差(OPD)的校正发送到系统。然而,超出范围的相位变化[-π,π]未进行感测,且因此不闭环操作期间完全校正。 PHASECam的相位展开算法,试图缓解这个问题,还偶尔失败快速,大相位变化的情况下。这可能会导致条纹跳跃,在该情况下展开的相位将是由一个波长或多个不正确。这可以通过当前的观察者手工校正,但是这是低效的。更可靠的和自动化的解决方案是期望的,特别是作为LBTI开始委托模式进一步需要健壮,活性相的控制,包括控制的多轴向(斐索)干涉测量法和双孔径非冗余孔径掩蔽干涉。我们提出条纹跳跃捕获和校正其涉及K个频带和当前未使用的H频带相遥测之间的直接比较的多波长方法。

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