First operation of a free-electron laser generating GW power radiation at 32 nm wavelength

被引:311
作者
Ayvazyan, V
Baboi, N
Bähr, J
Balandin, V
Beutner, B
Brandt, A
Bohnet, I
Bolzmann, A
Brinkmann, R
Brovko, OI
Carneiro, JP
Casalbuoni, S
Castellano, M
Castro, P
Catani, L
Chiadroni, E
Choroba, S
Cianchi, A
Delsim-Hashemi, H
Di Pirro, G
Dohlus, M
Düsterer, S
Edwards, HT
Faatz, B
Fateev, AA
Feldhaus, J
Flöttmann, K
Frisch, J
Fröhlich, L
Garvey, T
Gensch, U
Golubeva, N
Grabosch, HJ
Grigoryan, B
Grimm, O
Hahn, U
Han, JH
Hartrott, MV
Honkavaara, K
Hüning, M
Ischebeck, R
Jaeschke, E
Jablonka, M
Kammering, R
Katalev, V
Keitel, B
Khodyachykh, S
Kim, Y
Kocharyan, V
Körfer, M
机构
[1] DESY, Deutsch Elektron Synchrotron, D-22603 Hamburg, Germany
[2] CEA Saclay, F-91191 Gif Sur Yvette, France
[3] Univ Wurzburg, Inst Theoret Phys & Astrophys, D-97074 Wurzburg, Germany
[4] BESSY, D-12489 Berlin, Germany
[5] Ctr Advancement Nat Discoveries Using Light Emiss, CANDLE, Yerevan 375040, Armenia
[6] Tech Univ Darmstadt, Inst TEMF, D-64289 Darmstadt, Germany
[7] DESY, Deutsch Elektronen Synchrotron, D-15738 Zeuthen, Germany
[8] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA
[9] Univ Hamburg, Inst Expt Phys, D-22761 Hamburg, Germany
[10] Univ Padua, Dept Informat Engn, INFM, I-35131 Padua, Italy
[11] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy
[12] INFN Milano, LASA, I-20090 Segrate, MI, Italy
[13] INRN Roma 2, I-00100 Rome, Italy
[14] Bulgarian Acad Sci, Inst Nucl Res & Nucl Energy, BU-1784 Sofia, Bulgaria
[15] Joint Inst Nucl Res, Dubna 141980, Moscow Region, Russia
[16] Univ Paris 11, CNRS, IN2P3, Accelerateur Lineaire Lab, F-91898 Orsay, France
[17] Max Born Inst, D-12489 Berlin, Germany
[18] Stanford Linear Accelerator Ctr, Menlo Pk, CA 94025 USA
关键词
D O I
10.1140/epjd/e2005-00308-1
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Many scientific disciplines ranging from physics, chemistry and biology to material sciences, geophysics and medical diagnostics need a powerful X-ray source with pulse lengths in the femtosecond range [1-4]. This would allow, for example, time-resolved observation of chemical reactions with atomic resolution. Such radiation of extreme intensity, and tunable over a wide range of wavelengths, can be accomplished using high-gain free-electron lasers (FEL) [5-10]. Here we present results of the first successful operation of an FEL at a wavelength of 32 nm, with ultra-short pulses (25 fs FWHM), a peak power at the Gigawatt level, and a high degree of transverse and longitudinal coherence. The experimental data are in full agreement with theory. This is the shortest wavelength achieved with an FEL to date and an important milestone towards a user facility designed for wavelengths down to 6 nm. With a peak brilliance exceeding the state-of-the-art of synchrotron radiation sources [4] by seven orders of magnitude, this device opens a new field of experiments, and it paves the way towards sources with even shorter wavelengths, such as the Linac Coherent Light Source [3] at Stanford, USA, and the European X-ray Free Electron Laser Facility [4] in Hamburg, Germany.
引用
收藏
页码:297 / 303
页数:7
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