12 February 2021 Experimental investigation on the intensity-balanced dual-frequency Nd: GdVO4 microchip laser
Miao Hu, Mengmeng Xu, Yizhi Ke, Xuefang Zhou, Yang Lu, Meihua Bi, Qiliang Li
Author Affiliations +
Abstract

We present an intensity-balanced dual-frequency laser (DFL) based on an Nd: GdVO4 microchip crystal. The intensity balance ratio tuning mechanism of the DFL, which is governed by the heat sink temperature Tc of the laser crystal, is experimentally studied. The experimental results indicate that keeping a balanced intensity condition, when the pumping power of the DFL increases, the heat sink temperature Tc of the laser crystal must be lowered to rebalance the DFL signal intensities. The Tc versus pumping power slope is experimentally measured to be −17.95  °  C  /  W. By fixing the pumping power at 5.6 W, an intensity-balanced microchip DFL with output power up to 103 mW and frequency separation up to 61 GHz is achieved, whose slope efficiency is 9%.

© 2021 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2021/$28.00 © 2021 SPIE
Miao Hu, Mengmeng Xu, Yizhi Ke, Xuefang Zhou, Yang Lu, Meihua Bi, and Qiliang Li "Experimental investigation on the intensity-balanced dual-frequency Nd: GdVO4 microchip laser," Optical Engineering 60(2), 026101 (12 February 2021). https://doi.org/10.1117/1.OE.60.2.026101
Received: 9 November 2020; Accepted: 19 January 2021; Published: 12 February 2021
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KEYWORDS
Neodymium

Crystals

Laser crystals

Signal processing

Optical engineering

Ranging

RF photonics

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