Singh Bijendra, Subramaniam V V, Daultabad S R, Chakraborty Ashim
Laser System Engineering Division, Raja Ramanna Center for Advanced Technology, Indore 452013, India.
Rev Sci Instrum. 2010 Jul;81(7):073110. doi: 10.1063/1.3457847.
We report for the first time the performance of axicon based conical resonators (ABCRs) in a copper vapor laser, with novel results. The unstable conical resonator comprising of conical mirror (reflecting axicon) with axicon angle approximately pi/18, cone angle approximately 160 degrees, and a convex mirror of 60 cm radius of curvature was effective in reducing the average beam divergence to approximately 0.15 mrad (approximately 25 fold reduction compared to standard multimode plane-plane cavity) with output power of approximately 31 W. Extraction efficiency of approximately 50%-60% and beam divergence of <1 mrad was achieved in other stable ABCR configurations using flat and concave mirrors with the axicon. This is a significant improvement compared to 4-5 mrad normally observed in conventional stable resonators in copper vapor lasers. The conical resonators with copper vapor laser provide high misalignment tolerance beta approximately 4-5 mrad where beta is the tilt angle of the conical mirror from optimum position responsible for approximately 20% decline in laser power. The depth of focus d was approximately three times larger in case of conical resonator as compared to that of standard spherical unstable resonator under similar beam divergence and focusing conditions.
我们首次报告了基于轴棱锥的锥形谐振器(ABCRs)在铜蒸气激光器中的性能,取得了新颖的结果。这种不稳定的锥形谐振器由轴棱锥角约为π/18、锥角约为160度的锥形镜(反射轴棱锥)和曲率半径为60 cm的凸面镜组成,能有效将平均光束发散角降低至约0.15 mrad(与标准多模平面-平面腔相比约降低25倍),输出功率约为31 W。在其他使用带有轴棱锥的平面镜和凹面镜的稳定ABCR配置中,提取效率约为50%-60%,光束发散角<1 mrad。与铜蒸气激光器中传统稳定谐振器通常观察到的4-5 mrad相比,这是一个显著的改进。带有铜蒸气激光器的锥形谐振器具有高失调容限β约为4-5 mrad,其中β是锥形镜相对于最佳位置的倾斜角,该倾斜会导致激光功率下降约20%。在相似的光束发散和聚焦条件下,与标准球面不稳定谐振器相比,锥形谐振器的焦深d大约大三倍。