Chinese Journal of Lasers, Volume. 50, Issue 17, 1714001(2023)
Single-Shot Waveform and Spectrum Measurement Techniques for Strong Field Terahertz Pulses
[1] Hafez H A, Chai X, Ibrahim A et al. Intense terahertz radiation and their applications[J]. Journal of Optics, 18, 093004(2016).
[2] Han Z H, Sun K L, Cai Y J. Research progress of micro-nano optical structure and terahertz radiation generation technology[J]. Acta Optica Sinica, 41, 0823017(2021).
[3] Jin Y P, Yang Y, Xu X L. Terahertz radiation characteristics based on nonlinear optical effect of nano-antenna array[J]. Acta Optica Sinica, 42, 1506001(2022).
[4] Hebling J, Almasi G, Kozma I Z et al. Velocity matching by pulse front tilting for large area THz-pulse generation[J]. Optics Express, 10, 1161-1166(2002).
[5] Vicario C, Ovchinnikov A V, Ashitkov S I et al. Generation of 0.9-mJ THz pulses in DSTMS pumped by a Cr∶Mg2SiO4 laser[J]. Optics Letters, 39, 6632-6635(2014).
[6] Zhang B L, Ma Z Z, Ma J L et al. 1.4-mJ high energy terahertz radiation from lithium niobates[J]. Laser & Photonics Reviews, 15, 2000295(2021).
[7] Gopal A, Herzer S, Schmidt A et al. Observation of gigawatt-class THz pulses from a compact laser-driven particle accelerator[J]. Physical Review Letters, 111, 074802(2013).
[8] Liao G Q, Li Y T, Zhang Y H et al. Demonstration of coherent terahertz transition radiation from relativistic laser-solid interactions[J]. Physical Review Letters, 116, 205003(2016).
[9] Danson C, Hillier D, Hopps N et al. Petawatt class lasers worldwide[J]. High Power Laser Science and Engineering, 3, e3(2015).
[10] Danson C N, Haefner C, Bromage J et al. Petawatt and exawatt class lasers worldwide[J]. High Power Laser Science and Engineering, 7, e54(2019).
[11] Wu X J, Kong D Y, Hao S B et al. Generation of 13.9-mJ terahertz radiation from lithium niobate materials[J]. Advanced Materials, 35, e2208947(2023).
[12] Liao G Q, Li Y T, Liu H et al. Multimillijoule coherent terahertz bursts from picosecond laser-irradiated metal foils[J]. Proceedings of the National Academy of Sciences of the United States of America, 116, 3994-3999(2019).
[13] Liao G Q, Liu H, Scott G G et al. Towards terawatt-scale spectrally tunable terahertz pulses via relativistic laser-foil interactions[J]. Physical Review X, 10, 031062(2020).
[14] Wu Q, Zhang X C. Free-space electro-optic sampling of terahertz beams[J]. Applied Physics Letters, 67, 3523-3525(1995).
[15] Nahata A, Weling A S, Heinz T F. A wideband coherent terahertz spectroscopy system using optical rectification and electro-optic sampling[J]. Applied Physics Letters, 69, 2321-2323(1996).
[16] Kim K Y, Taylor A J, Glownia J H et al. Coherent control of terahertz supercontinuum generation in ultrafast laser-gas interactions[J]. Nature Photonics, 2, 605-609(2008).
[17] Ropagnol X, Kovács Z, Gilicze B et al. Intense sub-terahertz radiation from wide-bandgap semiconductor based large-aperture photoconductive antennas pumped by UV lasers[J]. New Journal of Physics, 21, 113042(2019).
[18] Teo S M, Ofori-Okai B K, Werley C A et al. Invited Article: single-shot THz detection techniques optimized for multidimensional THz spectroscopy[J]. Review of Scientific Instruments, 86, 051301(2015).
[19] Zhang X C, Xu J Z. THz air photonics[M]. Introduction to THz wave photonics, 97-125(2010).
[20] Jiang Z P, Zhang X C. Electro-optic measurement of THz field pulses with a chirped optical beam[J]. Applied Physics Letters, 72, 1945-1947(1998).
[21] Sun F G, Jiang Z P, Zhang X C. Analysis of terahertz pulse measurement with a chirped probe beam[J]. Applied Physics Letters, 73, 2233-2235(1998).
[22] Sharma G, Singh K, Al-Naib I et al. Terahertz detection using spectral domain interferometry[J]. Optics Letters, 37, 4338-4340(2012).
[23] Zheng S Q, Pan X J, Cai Y et al. Common-path spectral interferometry for single-shot terahertz electro-optics detection[J]. Optics Letters, 42, 4263-4266(2017).
[24] Zheng S Q, Lin Q G, Cai Y et al. Improved common-path spectral interferometer for single-shot terahertz detection[J]. Photonics Research, 6, 177-181(2018).
[25] Kim K Y, Alexeev I, Milchberg H M. Single-shot supercontinuum spectral interferometry[J]. Applied Physics Letters, 81, 4124-4126(2002).
[26] Shan J E, Weling A S, Knoesel E et al. Single-shot measurement of terahertz electromagnetic pulses by use of electro-optic sampling[J]. Optics Letters, 25, 426-428(2000).
[27] Tian Q L, Du Y C, Xu H X et al. Single-shot spatial-temporal electric field measurement of intense terahertz pulses from coherent transition radiation[J]. Physical Review Accelerators and Beams, 23, 102802(2020).
[28] Kim K Y, Yellampalle B, Taylor A J et al. Single-shot terahertz pulse characterization via two-dimensional electro-optic imaging with dual echelons[J]. Optics Letters, 32, 1968-1970(2007).
[29] Shin T, Wolfson J W, Teitelbaum S W et al. Dual echelon femtosecond single-shot spectroscopy[J]. Review of Scientific Instruments, 85, 083115(2014).
[30] Jin Z, Zhuo H B, Nakazawa T et al. Highly efficient terahertz radiation from a thin foil irradiated by a high-contrast laser pulse[J]. Physical Review E, 94, 033206(2016).
[31] Casalbuoni S, Schlarb H, Schmidt B et al. Numerical studies on the electro-optic detection of femtosecond electron bunches[J]. Physical Review Special Topics—Accelerators and Beams, 11, 072802(2008).
[32] Kim K Y, Glownia J H, Taylor A J et al. High-power broadband terahertz generation via two-color photoionization in gases[J]. IEEE Journal of Quantum Electronics, 48, 797-805(2012).
[33] Liu H, Liao G Q, Zhang Y H et al. Study of backward terahertz radiation from intense picosecond laser-solid interactions using a multichannel calorimeter system[J]. High Power Laser Science and Engineering, 7, e6(2019).
[34] Sun F Z, Liao G Q, Lei H Y et al. A non-collinear autocorrelator for single-shot characterization of ultrabroadband terahertz pulses[J]. Review of Scientific Instruments, 93, 123003(2022).
Get Citation
Copy Citation Text
Hongyi Lei, Fangzheng Sun, Hao Chen, Yanyu Wei, Baolong Zhang, Guoqian Liao, Yutong Li. Single-Shot Waveform and Spectrum Measurement Techniques for Strong Field Terahertz Pulses[J]. Chinese Journal of Lasers, 2023, 50(17): 1714001
Category: terahertz technology
Received: May. 4, 2023
Accepted: Jun. 19, 2023
Published Online: Aug. 28, 2023
The Author Email: Liao Guoqian (gqliao@iphy.ac.cn), Li Yutong (ytli@iphy.ac.cn)