论文标题

固态高谐波产生的高敏频梳子载体 - Envelope-相相

High-sensitivity Frequency Comb Carrier-Envelope-Phase Metrology in Solid State High Harmonic Generation

论文作者

Lesko, Daniel M. B., Chang, Kristina F., Diddams, Scott A.

论文摘要

非扰动和相位敏感的光 - 产物相互作用导致了光的脉冲和同一时间尺度上的对照电流的产生。传统上,通过高谐波产生探测这些效果涉及复杂的激光器和设备,以产生获得对光波相敏感的频谱所需的几个周期和高峰值脉冲。取而代之的是,我们表明,可以在具有简单的低能频率梳子的固态晶体中访问取决于载体 - 内玻璃相的非线性效应,我们将其与高敏化解释技术结合使用,以测量谐波光谱调制。这一进步的核心是在1550 nm处使用可扩展的100 MHz Erbium纤维频率梳子,以产生10 NJ,20 FS脉冲,这些脉冲聚焦到TW/CM2水平。在单个通过500μmZnO晶体中,谐波光谱短至200 nm。使用该系统,我们引入了一种载体 - 振幅幅度调制光谱(CAM)的技术,并使用它来表征具有85 dB信号 - 噪声比率的紫外线谐波的相位敏感调制。我们通过驱动脉冲的极化门控来进一步验证谐波产生的非扰动性质,以增加载体 - 内玻璃阶段的影响。我们的工作展示了以100 MHz的速率产生和表征和谐产生的强大和超敏感方法,这在固态系统中的Attosend非线性过程的研究中应具有优势。此外,作为一个简单且低噪声的频率梳子,该宽带源将有助于跨紫外线和可见光谱区域(200-650 nm)的一系列物理系统的精确双弯曲光谱。

Non-perturbative and phase-sensitive light-matter interactions have led to the generation of attosecond pulses of light and the control electrical currents on the same timescale. Traditionally, probing these effects via high harmonic generation has involved complicated lasers and apparatuses to generate the few-cycle and high peak power pulses needed to obtain and measure spectra that are sensitive to the phase of the light wave. Instead, we show that nonlinear effects dependent on the carrier-envelope phase can be accessed in solid state crystals with simple low-energy frequency combs that we combine with high-sensitivity demodulation techniques to measure harmonic spectral modulations. Central to this advance is the use of a scalable 100 MHz Erbium-fiber frequency comb at 1550 nm to produce 10 nJ, 20 fs pulses which are focused to the TW/cm2 level. In a single pass through a 500 μm ZnO crystal this yields harmonic spectra as short as 200 nm. With this system, we introduce a technique of carrier-envelope amplitude modulation spectroscopy (CAMS) and use it to characterize the phase-sensitive modulation of the ultraviolet harmonics with 85 dB signal-to-noise ratio. We further verify the non-perturbative nature of the harmonic generation through polarization gating of the driving pulse to increase the effects of the carrier-envelope phase. Our work demonstrates robust and ultra-sensitive methods for generating and characterizing harmonic generation at 100 MHz rates that should provide advantages in the study of attosecond nonlinear processes in solid state systems. Additionally, as a simple and low-noise frequency comb, this broadband source will be useful for precision dual-comb spectroscopy of a range of physical systems across the ultraviolet and visible spectral regions (200 - 650 nm).

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