论文标题

纳秒时间分辨的双弯曲吸收光谱

Nanosecond time-resolved dual-comb absorption spectroscopy

论文作者

Long, David A., Cich, Matthew J., Mathurin, Carl, Heiniger, Adam T., Mathews, Garrett C., Frymire, Augustine, Rieker, Gregory B.

论文摘要

频率梳子已彻底改变了光谱的领域,使研究人员能够探测具有多种准确和精确的光频率的分子系统。尽管直接频率梳光谱已经取得了长足的进步,但这些方法无法记录许多生理化学过程的纳秒时间尺度特征上的高分辨率光谱。在这里,我们展示了一种新的方法,用于发光频率梳子的产生,其中在近红外产生了一对电磁梳,随后以高相互连贯性和效率转移到单个光学参数振荡器中的中红外。这些梳子的高功率,相互连贯性和敏捷的重复速率以及许多分子物种的大型中含量吸收使得可以完全分辨的光谱转变记录在短达20 ns的时标。我们已经应用了这种方法来研究超音速脉冲喷射中发生的快速动力学,但是我们注意到该方法广泛适用于化学和量子物理,大气化学,燃烧科学和生物学等领域。

Frequency combs have revolutionized the field of optical spectroscopy, enabling researchers to probe molecular systems with a multitude of accurate and precise optical frequencies. While there have been tremendous strides in direct frequency comb spectroscopy, these approaches have been unable to record high resolution spectra on the nanosecond timescale characteristic of many physiochemical processes. Here we demonstrate a new approach to optical frequency comb generation in which a pair of electro-optic combs is produced in the near-infrared and subsequently transferred with high mutual coherence and efficiency into the mid-infrared within a single optical parametric oscillator. The high power, mutual coherence, and agile repetition rates of these combs as well as the large mid-infrared absorption of many molecular species enable fully resolved spectral transitions to be recorded in timescales as short as 20 ns. We have applied this approach to study the rapid dynamics occurring within a supersonic pulsed jet, however we note that this method is widely applicable to fields such as chemical and quantum physics, atmospheric chemistry, combustion science, and biology.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源