Acta Optica Sinica, Volume. 26, Issue 5, 787(2006)
Wide-Angle X-Ray Supermirror Design Using Simulated Annealing Algorithm
[1] [1] V. A. Chernov, V. I. Kondratev, V. N. Korchuganov et al.. Synchrotron radiation and free electron laser activities at SSRC[J]. Nuclear. Instruments and Methods in Physics Research A, 1998, 405(2~3): 179~190
[2] [2] Fulvia Arfelli. Synchrotron light and imaging systems for medical radiology[J]. Nuclear Instruments and Methods in Physics Research A, 2000, 454(1): 11~25
[3] [3] Igor V. Kozhevnikov, Inna N. Bukreeva, Eric Ziegler. Design of X-ray supermirrors[J]. Nuclear Instruments and Methods in Physics Research A, 2001, 460(2~3): 424~443
[4] [4] Zhanshan Wang, Jianlin Cao, Alan G. Michette. Depth-graded multilayer X-ray optics with broad angular response[J]. Opt. Commun., 2000, 177(1): 25~32
[7] [7] E. Louis, E. Spiller, S. Abdali et al.. Multilayer X-ray mirrors for the objective crystal spectrometer on the spectrum Rntgen gamma satellite[C]. SPIE, 1995, 2515: 194~2038 Juan I. Larruquert. New layer-by layer Multilayer design method[J]. Opt. Soc. Am. A, 2002, 19(2): 385~391
[12] [12] Guanglu Gong, Yong Liu, Minping Qian. An adaptive simulated annealing algorithm[J]. Stochastic Processes and their Applications, 2001, 94(2): 95~103
[13] [13] Patrick Wang P, Der-san Chen. Continuous optimization by a variant of simulated annealing[J]. J. Computational Optimization and Applications, 1996, 6(1): 59~71
Get Citation
Copy Citation Text
[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Wide-Angle X-Ray Supermirror Design Using Simulated Annealing Algorithm[J]. Acta Optica Sinica, 2006, 26(5): 787