Compact XFEL and AMO sciences: SACLA and SCSS. Yabashi, M., Tanaka, H., Tanaka, T., Tomizawa, H., Togashi, T., Nagasono, M., Ishikawa, T., Harries, J. R., Hikosaka, Y., Hishikawa, A., Nagaya, K., Saito, N., Shigemasa, E., Yamanouchi, K., & Ueda, K. Journal of Physics B: Atomic, Molecular and Optical Physics, 46(16):164001, August, 2013.
Paper doi abstract bibtex The concept, design and performance of Japan's compact free-electron laser (FEL) facilities, the SPring-8 Compact SASE Source test accelerator (SCSS) and SPring-8 Angstrom Compact free electron LAser (SACLA), and their applications in mainly atomic, molecular and optical science are reviewed. At SCSS, intense, ultrafast FEL pulses at extreme ultraviolet (EUV) wavelengths have been utilized for investigating various multi-photon processes in atoms, molecules and clusters by means of ion and electron spectroscopy. The quantum optical effect superfluorescence has been observed with EUV excitation. A pump–probe technique combining FEL pulses with near infrared laser pulses has been realized to study the ultrafast dynamics of atoms, molecules and clusters in the sub-picosecond regime. At SACLA, deep inner-shell multi-photon ionization by intense x-ray FEL pulses has been investigated. The development of seeded FEL sources for producing transversely and temporally coherent light, as well as the expected impact on advanced science are discussed.
@article{ yabashi_compact_2013,
title = {Compact {XFEL} and {AMO} sciences: {SACLA} and {SCSS}},
volume = {46},
issn = {0953-4075},
shorttitle = {Compact {XFEL} and {AMO} sciences},
url = {http://iopscience.iop.org/0953-4075/46/16/164001},
doi = {10.1088/0953-4075/46/16/164001},
abstract = {The concept, design and performance of Japan's compact free-electron laser ({FEL}) facilities, the {SPring}-8 Compact {SASE} Source test accelerator ({SCSS}) and {SPring}-8 Angstrom Compact free electron {LAser} ({SACLA}), and their applications in mainly atomic, molecular and optical science are reviewed. At {SCSS}, intense, ultrafast {FEL} pulses at extreme ultraviolet ({EUV}) wavelengths have been utilized for investigating various multi-photon processes in atoms, molecules and clusters by means of ion and electron spectroscopy. The quantum optical effect superfluorescence has been observed with {EUV} excitation. A pump–probe technique combining {FEL} pulses with near infrared laser pulses has been realized to study the ultrafast dynamics of atoms, molecules and clusters in the sub-picosecond regime. At {SACLA}, deep inner-shell multi-photon ionization by intense x-ray {FEL} pulses has been investigated. The development of seeded {FEL} sources for producing transversely and temporally coherent light, as well as the expected impact on advanced science are discussed.},
language = {en},
number = {16},
urldate = {2013-12-09TZ},
journal = {Journal of Physics B: Atomic, Molecular and Optical Physics},
author = {Yabashi, M. and Tanaka, H. and Tanaka, T. and Tomizawa, H. and Togashi, T. and Nagasono, M. and Ishikawa, T. and Harries, J. R. and Hikosaka, Y. and Hishikawa, A. and Nagaya, K. and Saito, N. and Shigemasa, E. and Yamanouchi, K. and Ueda, K.},
month = {August},
year = {2013},
pages = {164001}
}
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