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Wavelength shifting of intra-cavity photons: Adiabatic wavelength tuning in rapidly wavelength-swept lasers

机译:腔内光子的波长移动:快速波长扫描激光器中的绝热波长调谐

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We analyze the physics behind the newest generation of rapidly wavelength tunable sources for optical coherence tomography (OCT), retaining a single longitudinal cavity mode during operation without repeated build up of lasing. In this context, we theoretically investigate the currently existing concepts of rapidly wavelength-swept lasers based on tuning of the cavity length or refractive index, leading to an altered optical path length inside the resonator. Specifically, we consider vertical-cavity surface-emitting lasers (VCSELs) with microelectromechanical system (MEMS) mirrors as well as Fourier domain mode-locked (FDML) and Vernier-tuned distributed Bragg reflector (VT-DBR) lasers. Based on heuristic arguments and exact analytical solutions of Maxwell’s equations for a fundamental laser resonator model, we show that adiabatic wavelength tuning is achieved, i.e., hopping between cavity modes associated with a repeated build up of lasing is avoided, and the photon number is conserved. As a consequence, no fundamental limit exists for the wavelength tuning speed, in principle enabling wide-range wavelength sweeps at arbitrary tuning speeds with narrow instantaneous linewidth.
机译:我们分析了用于光学相干断层扫描(OCT)的最新一代快速波长可调光源背后的物理原理,在操作过程中保持了单个纵向腔模式,而不会重复产生激光。在这种情况下,我们从理论上研究了基于腔长度或折射率调整的快速波长扫描激光器的现有概念,从而导致了谐振器内部光路长度的改变。具体来说,我们考虑具有微机电系统(MEMS)镜的垂直腔面发射激光器(VCSEL)以及傅立叶域锁模(FDML)和游标调谐分布式布拉格反射器(VT-DBR)激光器。基于启发式论点和基本激光谐振器模型的Maxwell方程的精确解析解,我们表明可以实现绝热波长调谐,即避免了与重复发射激光有关的腔模之间的跳变,并且光子数得以保留。因此,波长调谐速度没有根本限制,原则上可以在任意调谐速度下以较窄的瞬时线宽进行宽范围的波长扫描。

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