Transmission of high power laser beams through partially absorbing materials modifies the light propagation via a thermally-induced effect known as thermal lensing. This may cause changes in the beam waist position and degrade the beam quality. Here we characterize the effect of thermal lensing associated with the different elements typically employed in an optical trapping setup for cold atoms experiments. We find that the only relevant thermal lens is represented by the TeO2 crystal of the acousto-optic modulator exploited to adjust the laser power on the atomic sample. We then devise a simple and totally passive scheme that enables to realize an inexpensive optical trapping apparatus essentially free from thermal lensing effects. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement

Realization of a high power optical trapping setup free from thermal lensing effects / Simonelli, C; Neri, E; Ciamei, A; Goti, I; Inguscio, M; Trenkwalder, A; Zaccanti, M. - In: OPTICS EXPRESS. - ISSN 1094-4087. - ELETTRONICO. - 27:19(2019), pp. 27215-27228. [10.1364/OE.27.027215]

Realization of a high power optical trapping setup free from thermal lensing effects

Goti, I;Inguscio, M;
2019

Abstract

Transmission of high power laser beams through partially absorbing materials modifies the light propagation via a thermally-induced effect known as thermal lensing. This may cause changes in the beam waist position and degrade the beam quality. Here we characterize the effect of thermal lensing associated with the different elements typically employed in an optical trapping setup for cold atoms experiments. We find that the only relevant thermal lens is represented by the TeO2 crystal of the acousto-optic modulator exploited to adjust the laser power on the atomic sample. We then devise a simple and totally passive scheme that enables to realize an inexpensive optical trapping apparatus essentially free from thermal lensing effects. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
2019
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2972119