Comparison of the Laser Generation Parameters in the Coherent and in the Standard Incoherent Passive Mode Locking Regime

IF 0.8 4区 物理与天体物理 Q4 OPTICS
R. M. Arkhipov, M. V. Arkhipov, O. O. Diachkova, A. V. Pakhomov, N. N. Rosanov
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引用次数: 0

Abstract

A comparison of the generation efficiency of short pulses with coherent and standard passive (incoherent) mode locking with a saturable absorber is made on the basis of numerical simulations. The advantage of the coherent mode locking in comparison to the standard mode locking in lasers with a saturable absorber is shown. Coherent mode locking in two-section lasers is based on the coherent interaction of the radiation with the absorbing and amplifying media. It allows the generation of ultrashort laser pulses with a duration shorter than the polarisation relaxation time T2 of the absorbing and amplifying media. In conventional lasers with standard (incoherent) passive mode locking with a saturable absorber, the interaction of the laser pulses with the absorbing and amplifying media is incoherent and the duration of the generated pulses is always limited by the polarization relaxation time T2 of the absorber and amplifier.

Abstract Image

Abstract Image

相干和标准非相干无源模式锁定状态下的激光发生参数比较
摘要 在数值模拟的基础上,比较了利用可饱和吸收体进行相干模式锁定和标准被动(非相干)模式锁定的短脉冲生成效率。相干模式锁定与带有可饱和吸收器的激光器中的标准模式锁定相比具有优势。双段激光器的相干模式锁定基于辐射与吸收和放大介质的相干相互作用。它可以产生持续时间短于吸收和放大介质偏振弛豫时间 T2 的超短激光脉冲。在使用可饱和吸收体进行标准(非相干)被动模式锁定的传统激光器中,激光脉冲与吸收和放大介质之间的相互作用是非相干的,所产生脉冲的持续时间始终受到吸收体和放大器的偏振弛豫时间 T2 的限制。
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来源期刊
Optics and Spectroscopy
Optics and Spectroscopy 物理-光谱学
CiteScore
1.60
自引率
0.00%
发文量
55
审稿时长
4.5 months
期刊介绍: Optics and Spectroscopy (Optika i spektroskopiya), founded in 1956, presents original and review papers in various fields of modern optics and spectroscopy in the entire wavelength range from radio waves to X-rays. Topics covered include problems of theoretical and experimental spectroscopy of atoms, molecules, and condensed state, lasers and the interaction of laser radiation with matter, physical and geometrical optics, holography, and physical principles of optical instrument making.
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