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Diffraction-limited 577 nm true-yellow laser by frequency doubling of a tapered diode laser

机译:锥形二极管激光器的倍频限制衍射极限577 nm真黄色激光器

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A wide range of laser medical treatments are based on coagulation of blood by absorption of the laser radiation. It has, therefore, always been a goal of these treatments to maximize the ratio of absorption in the blood to that in the surrounding tissue. For this purpose lasers at 577 nm are ideal since this wavelength is at the peak of the absorption in oxygenated hemoglobin. Furthermore, 577 nm has a lower absorption in melanin when compared to green wavelengths (515 - 532 nm). giving it an advantage when treating at greater penetration depth. Here we present a laser system based on frequency doubling of an 1154 nm Distributed Bragg Reflector (DBR) tapered diode laser, emitting 1.1 W of single frequency and diffraction limited yellow light at 577 nm, corresponding to a conversion efficiency of 30.5%. The frequency doubling is performed in a single pass configuration using a cascade of two bulk non-linear crystals. The system is power stabilized over 10 hours with a standard deviation of 0.13% and the relative intensity noise is measured to be 0.064 % rms.
机译:广泛的激光医学治疗都基于吸收激光辐射引起的血液凝结。因此,这些治疗方法的目标一直是使血液与周围组织的吸收率最大化。为此目的,理想的是577 nm的激光器,因为该波长位于氧化血红蛋白的吸收峰值处。此外,与绿色波长(515-532 nm)相比,577 nm对黑色素的吸收较低。在更大的穿透深度下进行处理时具有优势。在这里,我们介绍了一种基于1154 nm分布式布拉格反射器(DBR)锥形二极管激光器的倍频的激光器系统,该激光器在577 nm处发出1.1 W的单频和衍射受限黄光,转换效率为30.5%。使用两个体非线性晶体的级联在单程配置中执行倍频。该系统在10个小时内功率稳定,标准偏差为0.13%,相对强度噪声测得为0.064%rms。

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