High energy, high pulse rate laser operation using crystalline adhesive-free bonded Yb:YAG slabs

Author:

De Vido MariastefaniaORCID,Jonathan Phillips P.,Meissner David1,Meissner Stephanie1,Quinn Gary2ORCID,Banerjee SaumyabrataORCID,Divoky Martin3ORCID,Mason Paul D.

Affiliation:

1. Onyx Optics, Inc.

2. Heriot-Watt University

3. Institue of Physics of the Czech Academy of Sciences

Abstract

We report on the successful amplification of 10 ns pulses to 10 J energy at 10 Hz in a DiPOLE laser amplifier using crystalline Yb:YAG/Cr:YAG composite slabs manufactured using adhesive-free bonding (AFB) technology. We demonstrate that bonded slabs are suitable for operation in high energy cryogenic laser amplifiers. We also report on frequency doubling of the beam amplified in the bonded slabs. When the pulse energy of the output infrared beam is set to 5 J, a pulse energy of 3.9 J is achieved in the green (corresponding to 78% conversion efficiency). Results demonstrate that AFB technology is suitable for producing large-sized gain material slabs and can overcome current limitations in the manufacture of large-aperture gain material pieces. We believe this work will facilitate energy scaling of high energy lasers where aperture scaling of optical elements is not achievable via conventional manufacturing techniques.

Funder

Royal Commission for the Exhibition of 1851

H2020 Spreading Excellence and Widening Participation

European Regional Development Fund

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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