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来自有机发射器的强的、载波频率和带宽可调谐的准单周期脉冲,覆盖太赫兹频率间隙。

Intense, carrier frequency and bandwidth tunable quasi single-cycle pulses from an organic emitter covering the Terahertz frequency gap.

作者信息

Vicario C, Monoszlai B, Jazbinsek M, Lee S-H, Kwon O-P, Hauri C P

机构信息

Paul Scherrer Institute, SwissFEL, 5232 Villigen PSI, Switzerland.

Rainbow Photonics AG, 8048 Zurich, Switzerland.

出版信息

Sci Rep. 2015 Sep 24;5:14394. doi: 10.1038/srep14394.

Abstract

In Terahertz (THz) science, one of the long-standing challenges has been the formation of spectrally dense, single-cycle pulses with tunable duration and spectrum across the frequency range of 0.1-15 THz (THz gap). This frequency band, lying between the electronically and optically accessible spectra hosts important molecular fingerprints and collective modes which cannot be fully controlled by present strong-field THz sources. We present a method that provides powerful single-cycle THz pulses in the THz gap with a stable absolute phase whose duration can be continuously selected between 68 fs and 1100 fs. The loss-free and chirp-free technique is based on optical rectification of a wavelength-tunable pump pulse in the organic emitter HMQ-TMS that allows for tuning of the spectral bandwidth from 1 to more than 7 octaves over the entire THz gap. The presented source tunability of the temporal carrier frequency and spectrum expands the scope of spectrally dense THz sources to time-resolved nonlinear THz spectroscopy in the entire THz gap. This opens new opportunities towards ultrafast coherent control over matter and light.

摘要

在太赫兹(THz)科学领域,长期存在的挑战之一是如何产生频谱密集的单周期脉冲,其持续时间和频谱在0.1 - 15太赫兹(太赫兹间隙)的频率范围内可调。这个位于电子和光学可及频谱之间的频段包含重要的分子指纹和集体模式,目前的强场太赫兹源无法对其进行完全控制。我们提出了一种方法,该方法能在太赫兹间隙中产生具有稳定绝对相位的强大单周期太赫兹脉冲,其持续时间可在68飞秒至1100飞秒之间连续选择。这种无损耗且无啁啾的技术基于在有机发射体HMQ - TMS中对波长可调泵浦脉冲的光学整流,它能够在整个太赫兹间隙将光谱带宽从1倍频程调谐到超过7倍频程。所展示的时间载波频率和频谱的源可调性将频谱密集太赫兹源的范围扩展到整个太赫兹间隙中的时间分辨非线性太赫兹光谱学。这为对物质和光进行超快相干控制开辟了新的机会。

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