parametric oscillators
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Photonics ◽  
2021 ◽  
Vol 8 (12) ◽  
pp. 565
Author(s):  
Soumya Sarang ◽  
Martin Richardson

Optical parametric oscillators (OPOs) and Raman lasers are two nonlinear-based laser technologies that extend the spectral range of conventional inversion lasers. Power and brightness scaling of lasers are significant for many applications in industry, medicine, and defense. Considerable advances have been made to enhance the power and brightness of inversion lasers. However, research around the power scaling of nonlinear lasers is lacking. This paper reviews the development and progress of output power of continuous-wave (CW) crystalline OPOs and Raman lasers. We further evaluate the power scalability of these two laser technologies by analyzing the cavity architectures and gain materials used in these lasers. This paper also discusses why diamond Raman lasers (DRLs) show tremendous potential as a single laser source for generating exceedingly high output powers and high brightness.


2021 ◽  
Author(s):  
Evgenii Y. Erushin ◽  
Nadezhda Y. Kostyukova ◽  
Boris N. Nyushkov ◽  
Andrey A. Boyko ◽  
Asya Y. Kiryakova ◽  
...  

2021 ◽  
Author(s):  
Niklas Lüpken ◽  
David Becker ◽  
Thomas Würthwein ◽  
Klaus Boller ◽  
Carsten Fallnich

Photoniques ◽  
2021 ◽  
pp. 53-57
Author(s):  
Jean-Michel Melkonian ◽  
Jean-Baptiste Dherbecourt ◽  
Myriam Raybaut ◽  
Antoine Godard

Optical parametric oscillators are versatile devices for generating a tunable coherent radiation from an incident laser beam. They rely on nonlinear frequency conversion to cover spectral ranges that are poorly or not covered by direct laser emission. This article presents a short overview of the optical parametric oscillators principles of operation, main implementations and related applications.


2021 ◽  
Vol 29 (5) ◽  
pp. 727-738
Author(s):  
Yuri Morozov ◽  

Most of intracavity pumped optical parametric oscillators (OPO) are made nowaday according to a scheme with a single-resonance OPO located in the cavity of a pump laser. Usually the cavities of the pump and OPO (signal) emission have different values of round-trip time (delay). Aim of the study is therefore to build up the mathematical model of intracavity optical parametric oscillator (ICOPO) considered as a time-delay dynamic system with two values of delay in both cavities (the pump and signal). Methods. The model allows to analyze the steady state (equilibrium point) of the dynamic system and its stability with the help of characteristic equation’s solution. Results. Countless set of the characteristic equation roots is shown to consist of complex-conjugate pairs with imaginary parts which are nearly multiples of intermode beat frequencies in the pump and signal cavities. The diagram of stability depending on the position of nonlinear crystal in the resonator was built on the parameter plane. Features of the plane partition into the areas of stability/instabilty vs behavior of the characteristic equation roots are examined. Discussion. The results of the study allow to consider an ICOPO as the time-delay dynamic system thus adding to the physical picture of intracavity parametric oscillators.


2021 ◽  
pp. 61-82
Author(s):  
Malcolm H. Dunn ◽  
Majid Ebrahimzadeh

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