论文标题

耦合Fabry-Pérot谐振器中的光学模式转换

Optical mode conversion in coupled Fabry-Pérot resonators

论文作者

Stone, Mark, Suleymanzade, Aziza, Taneja, Lavanya, Schuster, David, Simon, Jonathan

论文摘要

对光的空间特性的相干控制对于从高带宽量子和经典通信到高功率纤维激光器的广泛应用至关重要。在完整且正交的模式集中,低损失转换对于鲁棒模式的交流尤其重要。在这里,我们在耦合的Fabry-Pérot谐振器之间引入了可调的阻抗不匹配,作为操纵光场的空间和时间特性的强大工具。在单模式状态下,频率依赖性阻抗匹配可以使可调的光学谐振器具有潜在的量子科学和感应中的应用。引入阻抗不匹配作为额外成分的空间依赖性可以使光光子在接近义务效率下的相干空间模式转换。我们实现了这些想法,在实验上证明了一个NIR谐振器,该谐振器在十年内可以调整,并且具有效率$> \!\!\!75 \%$的光学模式转换器,对于前六个Hermite-gauss模式。我们预计,对耦合多模谐振器的这种新观点将在微型和纳米光子学和计算机辅助逆设计中具有令人兴奋的应用程序。特别是,与腔内电磁场的结合将开辟新的视野,以实时控制激光,谐振器和光学过滤器的空间光谱特性。

Coherent control of the spatial properties of light is central to a wide variety of applications from high bandwidth quantum and classical communication to high power fiber lasers. Low-loss conversion amongst a complete and orthogonal set of modes is particularly important for robust mode-multiplexed communication. Here, we introduce tunable impedance mismatch between coupled Fabry-Pérot resonators as a powerful tool for manipulation of the spatial and temporal properties of optical fields. In the single-mode regime, frequency dependent impedance matching enables tunable finesse optical resonators, with potential applications in quantum science and sensing. Introducing the spatial dependence of the impedance mismatch as an additional ingredient enables coherent spatial mode conversion of optical photons at near-unity efficiency. We implement these ideas, experimentally demonstrating a NIR resonator whose finesse is tunable over a decade, and an optical mode converter with efficiency $>\!\!75\%$ for the first six Hermite-Gauss modes. We anticipate that this new perspective on coupled multimode resonators will have exciting applications in micro- and nano- photonics and computer-aided inverse design. In particular, combination with in-cavity electro-optics will open new horizons for real-time control of the spatio-spectral properties of lasers, resonators, and optical filters.

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