Montalvão Felipe Flores, de Almeida Iago Carvalho, Pinto Vinícius Pereira, de Oliveira Bruno Pereira, Yasuoka Fátima Maria Mitsue, Neto Jarbas Caiado de Castro
São Carlos Institute of Physics, University of São Paulo, PO BOX 369, São Carlos, 13560-970, SP, Brazil.
BR Labs Tecnologia Óptica e Fotônica Ltda, Juan Lopes St., 222 - Jardim São João Batista, São Carlos, 13567-020, SP, Brazil.
MethodsX. 2024 Jul 21;13:102873. doi: 10.1016/j.mex.2024.102873. eCollection 2024 Dec.
This article presents a direct method for temperature control in solid-state lasers, where temperature stability is crucial for optimizing the performance and reliability of such lasers. The proposed method utilizes Peltier chips for both cooling and heating the laser crystal to achieve precise temperature regulation. The system design is based on the step response of the open-loop thermal system and employs a proportional-integral (PI) controller for closed-loop temperature control. Comprehensive testing on a femtosecond Titanium-Sapphire Laser (Ti:Sapphire laser) demonstrated that the system is capable of maintaining the desired operating temperature with remarkable stability and efficiency, highlighting its practicality for real-world applications. Method Outline:•Utilization of Peltier chips for precise temperature control.•Estimation of first-order transfer function based on step response.•Implementation of a proportional-integral (PI) controller for closed-loop temperature regulation.
本文介绍了一种用于固态激光器温度控制的直接方法,在固态激光器中,温度稳定性对于优化此类激光器的性能和可靠性至关重要。所提出的方法利用珀耳帖芯片对激光晶体进行冷却和加热,以实现精确的温度调节。系统设计基于开环热系统的阶跃响应,并采用比例积分(PI)控制器进行闭环温度控制。在飞秒钛宝石激光器(Ti:Sapphire激光器)上进行的全面测试表明,该系统能够以卓越的稳定性和效率维持所需的工作温度,突出了其在实际应用中的实用性。方法概述:•利用珀耳帖芯片进行精确温度控制。•基于阶跃响应估计一阶传递函数。•采用比例积分(PI)控制器进行闭环温度调节。