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A dual-wavelength pumped thulium-doped laser based on gsa and esa

A thulium laser, dual-wavelength technology, applied in the field of lasers, to achieve the effect of increasing the number of particles in the layout

Active Publication Date: 2022-06-17
XUZHOU NORMAL UNIVERSITY
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Use at the same time 3 h 4 + 3 h 6 → 3 f 4 + 3 f 4 The cross-relaxation process will further achieve the metastable state 3 f 4 Particle population distribution of energy levels

Method used

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  • A dual-wavelength pumped thulium-doped laser based on gsa and esa
  • A dual-wavelength pumped thulium-doped laser based on gsa and esa

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Embodiment

[0020] The following takes 0.8μm and 1.45μm dual-wavelength pumped 2.3μmTm:YLF laser as an example to illustrate the proposed GSA and ESA dual-wavelength pumped 2.3-2.5μm thulium-doped laser scheme proposed by the present invention.

[0021] According to the ground state absorption spectrum and excited state absorption spectrum of Tm:YLF, 3 H 6 → 3 H 4 The absorption band corresponding to the transition is in the 0.78-0.8 μm band, and the peak absorption wavelength is at 780 nm. 3 F 4 → 3 H 4 The absorption band corresponding to the transition is located in the 1.45 μm band, and the peak absorption wavelength is located at 1452 nm. Therefore, commercial 780nm and 1452nm semiconductor lasers are selected as the pump sources for GSA and ESA respectively. 780nm and 1452nm band laser dual-wavelength pumping, 3 H 4 The distribution process of the number of energy levels on the laser can be divided into the following two steps: the first step is to pump through the 780nm ba...

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Abstract

The invention discloses a GSA and ESA dual-wavelength pumped thulium-doped laser, which is composed of a GSA pump source, an ESA pump source, a pump light beam combiner, an input mirror, a thulium-doped laser medium and an output mirror. GSA is the ground state absorption, corresponding to the thulium-doped laser medium 3 h 6 → 3 h 4 transition, ESA is excited state absorption, corresponding to 3 f 4 → 3 h 4 transition. Pumped by a GSA pump source, based on 3 h 6 → 3 h 4 The ground state absorption caused by the transition will change the Tm in the thulium-doped laser medium 3+ ion pumping to 3 h 4 Energy level, realize the first layout of the number of particles in this energy level. At the same time, the cross-relaxation process between thulium ions will further realize the metastable state 3 f 4 The particle population layout of the energy levels. Pumped by the ESA pump source, using 3 f 4 → 3 h 4 The excited state absorption caused by the transition will 3 f 4 The number of particles accumulated on the energy level is precisely pumped to 3 h 4 energy level, achieve 3 h 4 The second layout of the number of energy level particles. The scheme of pumping thulium-doped laser medium by GSA and ESA dual-wavelength that the present invention proposes can effectively improve 3 h 4 → 3 h 5 The layout of the number of particles on the energy level of the transition increases the laser output power in the 2.3-2.5μm band.

Description

technical field [0001] The invention belongs to the technical field of lasers, in particular to a thulium-doped laser based on GSA and ESA dual-wavelength pumping. Background technique [0002] Tm 3+ The ion energy level structure is rich, and it has the widest wavelength tuning range among all known rare earth ions. The potential transition can cover 0.8-3.8 μm, and it can be pumped by multiple wavelengths and obtain laser operation of multiple wavelengths. Currently targeting Tm-doped 3+ Most of the research work on lasers is focused on 3 F 4 → 3 H 6 The transition process, its emission wavelength is 1.8-2.1μm (depending on the host material). In fact, Tm 3+ Potential laser transition processes are diverse, with emission wavelengths in the 2.3-2.5 μm band 3 H 4 → 3 H 5 The jump is particularly noticeable. [0003] The 2.3-2.5μm band laser operation based on Tm-doped laser medium has the following advantages: (1) Four-level laser operation at room temperature. ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01S3/094H01S3/16
CPCH01S3/094096H01S3/163
Inventor 黄海涛
Owner XUZHOU NORMAL UNIVERSITY
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