论文标题
超快非线性紫外线脉冲调制在Alingan Polariton波导直至室温下运行
Ultrafast-nonlinear ultraviolet pulse modulation in an AlInGaN polariton waveguide operating up to room temperature
论文作者
论文摘要
超快速非线性光子学可以在先进的片上光谱和信息处理中进行大量应用。这些依赖于强度依赖性(非线性)折射率,能够在子秒时尺度上调节光脉冲,并且在适合集成光子学的长度尺度上调节光脉冲。当前,没有平台可以为紫外光谱范围提供此功能,在紫外线光谱范围内,非线性调制产生的宽带光谱可以为新的芯片上超快(Bio-)化学光谱设备铺平道路。我们在Alingan波导中展示了紫外杂交光晶状体(激子 - 核酸盐)的巨大非线性。我们通过实验测量了紧凑型100 $ $ m长的设备中紫外线脉冲的超快非线性光谱拓宽,并推断出非线性的1000倍,在常见的紫外线非线性材料中,可与非UV Polariton设备相媲美。我们的演示有望为新一代综合的紫外线非线性光源支撑,以进行晚期光谱和测量。
Ultrafast nonlinear photonics enables a host of applications in advanced on-chip spectroscopy and information processing. These rely on a strong intensity dependent (nonlinear) refractive index capable of modulating optical pulses on sub-picosecond timescales and on length scales suitable for integrated photonics. Currently there is no platform that can provide this for the UV spectral range where broadband spectra generated by nonlinear modulation can pave the way to new on-chip ultrafast (bio-) chemical spectroscopy devices. We demonstrate the giant nonlinearity of UV hybrid light-matter states (exciton-polaritons) up to room temperature in an AlInGaN waveguide. We experimentally measure ultrafast nonlinear spectral broadening of UV pulses in a compact 100 $μ$m long device and deduce a nonlinearity 1000 times that in common UV nonlinear materials and comparable to non-UV polariton devices. Our demonstration promises to underpin a new generation of integrated UV nonlinear light sources for advanced spectroscopy and measurement.