Exclusive: Large Experimental Equipment and Planning in Light, Cosmic Ray and Space Study

Dalian Coherent Light Source: Make a movie for molecules during chemical reaction

  • SUN Yang ,
  • ZHANG Weiqing ,
  • YANG Xueming
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  • Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China

Received date: 2018-11-16

  Revised date: 2018-12-25

  Online published: 2019-11-15

Abstract

Free electron laser (FEL), called the fourth advanced light source, is the most advanced experimental device to explore the microscopic world. It has a transformative driving effect on many subjects, such as energy, physics, chemistry, materials, biology, etc. With the successful research of "comprehensive experimental research equipment based on tunable EUV coherent light source (Dalian Coherent Light Source, DCLS)", China's vacancy in this area has been filled. DCLS could be expected to be the edge tool to promote the development of science and technology in China. This paper briefly reviews the research background of DCLS and the development status of FEL at home and abroad, then states the significance of the successful research of this equipment, and finally highlights its application prospect.

Cite this article

SUN Yang , ZHANG Weiqing , YANG Xueming . Dalian Coherent Light Source: Make a movie for molecules during chemical reaction[J]. Science & Technology Review, 2019 , 37(21) : 26 -31 . DOI: 10.3981/j.issn.1000-7857.2019.21.003

References

[1] Madey J. Stimulated emission of Bremsstrahlung in a periodic magnetic field[J]. Journal of Appllied Physics, 1971, 42(5):1906-1913.
[2] Ellias L R, Fairbank W M, Madey J M J, et al. Observation of stimulated emission of radiation by relativistic electrons in a spatially periodic transverse magnetic field[J]. Physical Review Letters, 1976, 36(13):717-720.
[3] 赵振堂, 冯超. X射线自由电子激光[J]. 物理, 2018, 47(8):481-490. Zhao Zhentang, Feng Chao. X-ray free electron laser[J]. Physics, 2018, 47(8):481-490.
[4] Kondratenko K, Saldin E. Generating of coherent radiation by a relativistic electron beam in an undulator[J]. Particle Accelerators, 1980(10):207-216.
[5] Yu L. Generation of intense UV radiation by subharmonically seeded single-pass free-electron lasers[J]. Physical Review A, 1991, 44(8):5178-5193.
[6] Stupakov G. Using the beam-echo effect for generation of short-wavelength radiation[J]. Physical Review Letters, 2009, 102(7):074801.
[7] Xiang D, Stupakov G. Echo-enabled harmonic generation free electron laser[J]. Physical Review Special Topics-Accelerators and Beams, 2009, 12(3):030702.
[8] Ackermann W, Asova G, Ayvazyan V, et al. Operation of a free-electron laser from the extreme ultraviolet to the water window[J]. Nature Photonics, 2007, 1(6):336-342.
[9] Schreiber S, Faatz B, Honkavaara K. Operation of FLASH at 6.5 nm wavelength[C]. Proceedings of the 2008 European Particle Accelerator Conference, 2008:133-135.
[10] Emma P, Akre R, Arthur J, et al. First lasing and operation of an angstrom-wavelength free-electron laser[J]. Nature Photonics, 2010, 4(9):641-647.
[11] Ishikawa T, Aoyagi H, Asaka T, et al. A compact X-ray free-electron laser emitting in the sub-angstrom region[J]. Nature Photonics, 2012, 6(8):540-544.
[12] Allaria E, Castronovo D, Cinquegrana P, et al. Twostage seeded soft-X-ray free-electron laser[J]. Nature Photonics, 2013, 7(11):913-918.
[13] Kang H S, Min C K, Heo H, et al. Hard X-ray freeelectron laser with femtosecond-scale timing jitter[J]. Nature Photonics, 2017, 11(11):708-713.
[14] Milne C, Schietinger T, Aiba M, et al. Swiss FEL:The Swiss X-ray free electron laser[J]. Applied Sciences, 2017, 7(7):720.
[15] Weise H, Decking W. Commissioning and first lasing of the European XFEL[C/OL]. 38th International Free Electron Laser Conference. Santa Fe, NM, USA, August 20-25, 2017:9-13. http://accelconf.web.cern.ch/AccelConf/fel2017/papers/moc03.pdf.
[16] Öström H, Öberg H, Xin H, et al. Probing the transition state region in catalytic CO oxidation on Ru[J]. Science, 2015, 347(6225):978-982.
[17] Redecke L, Nass K, DePonte D, et al. Natively inhibited Trypanosoma brucei cathepsin B structure determined by using an X-ray laser[J]. Science, 2013, 339(6116):227-230.
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