2005•Chinese Optics LettersRequires access

Theoretical study of Pr^(3+):ZBLAN upconversion ultraviolet fiber laser based on 4f5d state

方爱平, 罗涛, 孙桂娟, 王立军, 蒋占魁, 蒋占魁

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Abstract

A theoretical study of the kinetics of two-step-excitation upconversion ultraviolet cw fiber laser based on the 4f5d state in Pr3+:ZBLAN is performed using steady population rate equations and light propagation equations. Under different Pr3+ concentrations, the dependence of the threshold pump powers on the other pump power, the variations of laser output power with reflectivity of output coupler, pump powers and fiber length as well as the dependence of the optimum fiber length on pump powers are investigated.The results predict some optimum laser parameters for maximizing output power.

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A theoretical study of the kinetics of two-step-excitation upconversion ultraviolet cw fiber laser based on the 4f5d state in Pr3+:ZBLAN is performed using steady population rate equations and light propagation equations. Under different Pr3+ concentrations, the dependence of the threshold pump powers on the other pump power, the variations of laser output power with reflectivity of output coupler, pump powers and fiber length as well as the dependence of the optimum fiber length on pump powers are investigated.The results predict some optimum laser parameters for maximizing output power.

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Available abstract

A theoretical study of the kinetics of two-step-excitation upconversion ultraviolet cw fiber laser based on the 4f5d state in Pr3+:ZBLAN is performed using steady population rate equations and light propagation equations. Under different Pr3+ concentrations, the dependence of the threshold pump powers on the other pump power, the variations of laser output power with reflectivity of output coupler, pump powers and fiber length as well as the dependence of the optimum fiber length on pump powers are investigated.The results predict some optimum laser parameters for maximizing output power.

Key concepts: ZBLAN, Photon upconversion, Rate equation, Fiber laser, Materials science, Fiber, Laser, Power (physics)

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