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Temporal Cavity Solitons in a Laser-based Microcomb: A Path to a Self-Starting Pulsed Laser without Saturable Absorption

Authors :
Cutrona, A.
Hanzard, P. -H.
Rowley, M.
Totero-Gongora, J. S.
Peccianti, M.
Malomed, B. A.
Oppo, G. -L.
Pasquazi, A.
Publication Year :
2021

Abstract

We theoretically present a design of self-starting operation of microcombs based on laser-cavity solitons in a system composed of a micro-resonator nested in and coupled to an amplifying laser cavity. We demonstrate that it is possible to engineer the modulational-instability gain of the system's zero state to allow the start-up with a well-defined number of robust solitons. The approach can be implemented by using the system parameters, such as the cavity length mismatch and the gain shape, to control the number and repetition rate of the generated solitons. Because the setting does not require saturation of the gain, the results offer an alternative to standard techniques that provide laser mode-locking.<br />Comment: To be published in Optics Express

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2102.01164
Document Type :
Working Paper
Full Text :
https://doi.org/10.1364/OE.418283