Multipass wide-field phase imaging

光学 灵敏度(控制系统) 光子 相(物质) 噪音(视频) 干扰(通信) 样品(材料) 视野 物理 材料科学 计算机科学 人工智能 电信 图像(数学) 工程类 频道(广播) 热力学 量子力学 电子工程
作者
Álvaro Cuevas,Daniel Tiemann,Robin Camphausen,Iris Cusini,Antonio Panzani,Rajdeep Mukherjee,Federica Villa,Valerio Pruneri
出处
期刊:Optics Express [Optica Publishing Group]
卷期号:31 (22): 37262-37262
标识
DOI:10.1364/oe.499156
摘要

Advances in optical imaging always look for an increase in sensitivity and resolution among other practicability aspects. Within the same scope, in this work we report a versatile interference contrast imaging technique, with high phase sensitivity and a large field-of-view of several mm 2 . Sensitivity is increased through the use of a self-imaging non-resonant cavity, which causes photons to probe the sample in multiple rounds before being detected, where the configuration can be transmissive or reflective. Phase profiles can be resolved individually for each round thanks to a specially designed single-photon camera with time-of-flight capabilities and true pixels-off gating. Measurement noise is reduced by novel data processing combining the retrieved sample profiles from multiple rounds. Our protocol is especially useful under extremely low light conditions as required by biological or photo-sensitive samples. Results demonstrate more than a four-fold reduction in phase measurement noise, compared to single round imaging, and values close to the predicted sensitivity in case of the best possible cavity configuration, where all photons are maintained until n rounds. We also find good agreement with the theoretical predictions for low number of rounds, where experimental imperfections would play a minor role. The absence of a laser or cavity lock-in mechanism makes the technique an easy to use inspection tool.

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