论文标题

可见的泵 - 中红外泵 - 宽带探测:用于单发超快光谱的三脉冲设置的开发和表征50 kHz

Visible pump -- mid infrared pump -- broadband probe: development and characterization of a three-pulse setup for single-shot ultrafast spectroscopy at 50 kHz

论文作者

Montanaro, Angela, Giusti, Francesca, Colja, Matija, Brajnik, Gabriele, Marciniak, Alexandre M. A., Sergo, Rudi, De Angelis, Dario, Glerean, Filippo, Sparapassi, Giorgia, Jarc, Giacomo, Carrato, Sergio, Cautero, Giuseppe, Fausti, Daniele

论文摘要

我们在这里报告了一个实验设置,以在广泛的波长和温度范围内执行三脉冲泵探针测量。 By combining two pump pulses in the visible (650-900 nm) and mid-IR (5-20 $μ$m) range, with a broadband supercontinuum white-light probe, our apparatus enables both the combined selective excitation of different material degrees of freedom and a full time-dependent reconstruction of the non-equilibrium dielectric function of the sample.我们在这里描述了光学设置,低温样本环境和能够以50 kHz的最大重复速率引用的宽带光谱的单脉冲检测的定制采集电子,从而在1 s的集成时间内达到了10 $^{ - 4} $的顺序。我们通过在单级泵,光学推动和宽带探针上报告Bi $ $ _2 $ _2 $ _2 $ sr $ _2 $ y $ y $ _ $ _ {0.08} $ ca $ _ {0.92} $ cu $ _2 $ _2 $ _ {8+δ} $ clone ph.

We report here an experimental setup to perform three-pulse pump-probe measurements over a wide wavelength and temperature range. By combining two pump pulses in the visible (650-900 nm) and mid-IR (5-20 $μ$m) range, with a broadband supercontinuum white-light probe, our apparatus enables both the combined selective excitation of different material degrees of freedom and a full time-dependent reconstruction of the non-equilibrium dielectric function of the sample. We describe here the optical setup, the cryogenic sample environment and the custom-made acquisition electronics capable of referenced single-pulse detection of broadband spectra at the maximum repetition rate of 50 kHz, achieving a sensitivity of the order of 10$^{-4}$ over an integration time of 1 s. We demonstrate the performance of the setup by reporting data on mid-IR pump, optical push and broadband probe in a single-crystal of Bi$_2$Sr$_2$Y$_{0.08}$Ca$_{0.92}$Cu$_2$O$_{8+δ}$ across the superconducting and pseudogap phases.

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