Rapidly frequency-tuneable, in-vacuum, and magnetic levitation chopper for fast modulation of infrared light

Author:

Lekkas Ioannis1,Frogley Mark D.1ORCID,Achtnich Timon2ORCID,Cinque Gianfelice1ORCID

Affiliation:

1. MIRIAM Beamline B22, Diamond Light Source Ltd., Harwell Science and Innovation Campus, Oxon OX11 0DE Chilton, Didcot, United Kingdom

2. Celeroton AG, Industriestrasse 22, 8604 Volketswil, Switzerland

Abstract

We present an in-vacuum mechanical chopper running at high speed and integrated into a magnetic levitating motor for modulating optical beams up to 200 kHz. The compact chopper rotor allows fast acceleration (10 kHz s−1 as standard) for rapid tuning of the modulation frequency, while 1 mm diameter slots provide high optical throughput for larger infrared beams. The modulation performances are assessed using a reference visible laser and the high brightness, broadband, infrared (IR) beam of synchrotron radiation at the MIRIAM beamline B22 at Diamond Light Source, UK. For our application of IR nanospectroscopy, minimizing the temporal jitter on the modulated beam due to chopper manufacturing and control tolerances is essential to limit the noise level in measurements via lock-in detection, while high modulation frequencies are needed to achieve high spatial resolution in photothermal nanospectroscopy. When reaching the maximum chopping frequency of 200 kHz, the jitter was found to be 0.9% peak-to-peak. The described chopper now replaces the standard ball-bearing chopper in our synchrotron-based FTIR photothermal nanospectroscopy system, and we demonstrate improved spectroscopy results on a 200 nm thickness polymer film.

Funder

Diamond Light Source

Publisher

AIP Publishing

Subject

Instrumentation

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. VO2 Thin Film Enabled Free Space Modulation of Infrared Light Using Pulsed Electric Field;ACS Photonics;2024-04-26

2. Optical choppers: novel approaches for higher chop frequencies;Electro-Optical and Infrared Systems: Technology and Applications XX;2023-10-23

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