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FLASH太赫兹光束线处的光子诊断

Photon diagnostics at the FLASH THz beamline.

作者信息

Pan Rui, Zapolnova Ekaterina, Golz Torsten, Krmpot Aleksandar J, Rabasovic Mihailo D, Petrovic Jovana, Asgekar Vivek, Faatz Bart, Tavella Franz, Perucchi Andrea, Kovalev Sergey, Green Bertram, Geloni Gianluca, Tanikawa Takanori, Yurkov Mikhail, Schneidmiller Evgeny, Gensch Michael, Stojanovic Nikola

机构信息

Deutsches Elektronen-Synchrotron (DESY), Notkestrasse 85, D-22607 Hamburg, Germany.

Institute of Physics Belgrade, Pregrevica 118, 11080 Belgrade, Serbia.

出版信息

J Synchrotron Radiat. 2019 May 1;26(Pt 3):700-707. doi: 10.1107/S1600577519003412. Epub 2019 Apr 26.

DOI:10.1107/S1600577519003412
PMID:31074433
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6510192/
Abstract

The THz beamline at FLASH, DESY, provides both tunable (1-300 THz) narrow-bandwidth (∼10%) and broad-bandwidth intense (up to 150 uJ) THz pulses delivered in 1 MHz bursts and naturally synchronized with free-electron laser X-ray pulses. Combination of these pulses, along with the auxiliary NIR and VIS ultrashort lasers, supports a plethora of dynamic investigations in physics, material science and biology. The unique features of the FLASH THz pulses and the accelerator source, however, bring along a set of challenges in the diagnostics of their key parameters: pulse energy, spectral, temporal and spatial profiles. Here, these challenges are discussed and the pulse diagnostic tools developed at FLASH are presented. In particular, a radiometric power measurement is presented that enables the derivation of the average pulse energy within a pulse burst across the spectral range, jitter-corrected electro-optical sampling for the full spectro-temporal pulse characterization, spatial beam profiling along the beam transport line and at the sample, and a lamellar grating based Fourier transform infrared spectrometer for the on-line assessment of the average THz pulse spectra. Corresponding measurement results provide a comprehensive insight into the THz beamline capabilities.

摘要

德国电子同步加速器研究所(DESY)的自由电子激光装置(FLASH)中的太赫兹光束线可提供可调谐(1 - 300太赫兹)的窄带宽(约10%)和宽带宽强太赫兹脉冲(高达150微焦),以1兆赫兹的脉冲串形式输出,并与自由电子激光X射线脉冲自然同步。这些脉冲与辅助近红外和可见光超短激光相结合,支持在物理、材料科学和生物学领域进行大量动态研究。然而,FLASH太赫兹脉冲和加速器源的独特特性给其关键参数(脉冲能量、光谱、时间和空间分布)的诊断带来了一系列挑战。本文讨论了这些挑战,并介绍了在FLASH开发的脉冲诊断工具。特别介绍了一种辐射功率测量方法,它能够推导整个光谱范围内脉冲串中的平均脉冲能量;一种经过抖动校正的电光采样方法,用于完整的光谱 - 时间脉冲表征;沿光束传输线和在样品处的空间光束轮廓测量;以及一种基于层状光栅的傅里叶变换红外光谱仪,用于在线评估太赫兹脉冲平均光谱。相应的测量结果全面深入地展示了太赫兹光束线的性能。

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Photon diagnostics at the FLASH THz beamline.FLASH太赫兹光束线处的光子诊断
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引用本文的文献

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Phase Diversity Electro-optic Sampling: A new approach to single-shot terahertz waveform recording.相位分集电光采样:一种单次太赫兹波形记录的新方法。
Light Sci Appl. 2022 Jan 10;11(1):14. doi: 10.1038/s41377-021-00696-2.
2
Ultrafast multi-cycle terahertz measurements of the electrical conductivity in strongly excited solids.强激发固体中电导率的超快多周期太赫兹测量
Nat Commun. 2021 Mar 12;12(1):1638. doi: 10.1038/s41467-021-21756-6.
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Towards Intense THz Spectroscopy on Water: Characterization of Optical Rectification by GaP, OH1, and DSTMS at OPA Wavelengths.

本文引用的文献

1
Terahertz-Field-Induced Time Shifts in Atomic Photoemission.太赫兹场诱导原子光发射的时间位移。
Phys Rev Lett. 2019 Feb 22;122(7):073001. doi: 10.1103/PhysRevLett.122.073001.
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Polarization-sensitive pulse reconstruction by momentum-resolved photoelectron streaking.通过动量分辨光电子条纹进行偏振敏感脉冲重建。
Opt Express. 2018 Apr 2;26(7):8364-8374. doi: 10.1364/OE.26.008364.
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THz pulse doubler at FLASH: double pulses for pump-probe experiments at X-ray FELs.FLASH的太赫兹脉冲倍频器:用于X射线自由电子激光泵浦-探测实验的双脉冲
迈向对水的太赫兹强光谱研究:在OPA波长下用GaP、OH1和DSTMS对光整流的表征
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4
XUV-driven plasma switch for THz: new spatio-temporal overlap tool for XUV-THz pump-probe experiments at FELs.XUV 驱动的太赫兹等离子体开关:用于 FEL 上 XUV-太赫兹泵浦探测实验的新时空重叠工具。
J Synchrotron Radiat. 2020 Jan 1;27(Pt 1):11-16. doi: 10.1107/S1600577519014164.
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Attosecond interferometry with self-amplified spontaneous emission of a free-electron laser.利用自由电子激光自放大自发辐射的阿秒干涉测量。
Nat Commun. 2017 May 30;8:15626. doi: 10.1038/ncomms15626.
5
Probing ultra-fast processes with high dynamic range at 4th-generation light sources: Arrival time and intensity binning at unprecedented repetition rates.利用第四代光源以高动态范围探测超快过程:以前所未有的重复率进行到达时间和强度分箱。
Struct Dyn. 2017 Mar 6;4(2):024301. doi: 10.1063/1.4978042. eCollection 2017 Mar.
6
Metamaterial, plasmonic and nanophotonic devices.超材料、等离子体和纳米光子学器件。
Rep Prog Phys. 2017 Mar;80(3):036401. doi: 10.1088/1361-6633/aa518f. Epub 2017 Feb 6.
7
Correlated electronic decay in expanding clusters triggered by intense XUV pulses from a Free-Electron-Laser.由自由电子激光产生的强 XUV 脉冲引发的扩展团簇中的相关电子退激发。
Sci Rep. 2017 Jan 18;7:40736. doi: 10.1038/srep40736.
8
High-Field High-Repetition-Rate Sources for the Coherent THz Control of Matter.用于物质相干太赫兹控制的高场高重复率源。
Sci Rep. 2016 Feb 29;6:22256. doi: 10.1038/srep22256.
9
Silicon carbide--a high-transparency nonlinear material for THz applications.碳化硅——一种用于太赫兹应用的高透明度非线性材料。
Opt Express. 2016 Feb 8;24(3):2590-5. doi: 10.1364/OE.24.002590.
10
Invited Article: Single-shot THz detection techniques optimized for multidimensional THz spectroscopy.特邀文章:针对多维太赫兹光谱优化的单次太赫兹检测技术
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