Please wait a minute...
Chin. Phys. B, 2025, Vol. 34(12): 124101    DOI: 10.1088/1674-1056/addcc3
ELECTROMAGNETISM, OPTICS, ACOUSTICS, HEAT TRANSFER, CLASSICAL MECHANICS, AND FLUID DYNAMICS Prev   Next  

Detailed simulation and characterization of double paraboloidal monocapillary for laboratory x-ray sources

Shang-Kun Shao(邵尚坤)1,2, Tian-Yu Yuan(袁天语)1,2, Cheng-Bo Li(李成波)1, Xing-Yi Wang(王兴艺)3, Lu Hua(华陆)1,2, Yu-Chuan Zhong(钟玉川)1,2, Jin-Yue Hu(胡锦玥)1,2, Meng-Fang Chen(陈盟方)1,2, Xue-Peng Sun(孙学鹏)1,2,†, and Tian-Xi Sun(孙天希)1,2,‡
1 Institute of Radiation Technology, Beijing Academy of Science and Technology, Beijing 100875, China;
2 Key Laboratory of Beam Technology of the Ministry of Education, School of Physics and Astronomy, Beijing Normal University, Beijing 100875, China;
3 School of Physics and Engineering, Henan University of Science and Technology, Luoyang 471023, China
Abstract  A double-parabola monocapillary (DPM) was designed for laboratory x-ray sources, and its performance was evaluated through numerical simulations and experimental validation. A surface shape error model was developed to characterize the DPM surface profile, and ray-tracing methods were used to simulate key properties such as focal spot size, divergence, and transmission efficiency. The simulation results closely matched experimental measurements, validating the proposed model. This surface shape error simulation provides an efficient method for evaluating the impact of slope errors on DPM performance, offering insights for optimal design and precision manufacturing.
Keywords:  double paraboloidal monocapillary      capillary x-ray optics      laboratory x-ray source  
Received:  10 April 2025      Revised:  12 May 2025      Accepted manuscript online:  23 May 2025
PACS:  41.50.+h (X-ray beams and x-ray optics)  
  42.55.Vc (X- and γ-ray lasers)  
  41.50.+h (X-ray beams and x-ray optics)  
  07.85.-m (X- and γ-ray instruments)  
Fund: Project supported by project of Beijing Postdoctoral Research Fund (Grant No. 2025-ZZ-86), the National Natural Science Foundation of China (Grant Nos. 12105020 and 12075031), Shenzhen Science and Technology Program (Grant No. KJZD20230923114219040), the Natural Science Youth Foundation of Henan Province, China (Grant No. 242300420637), the Open Fund of Key Laboratory of Beam Technology of the Ministry of Education, Beijing Normal University (Grant No. BEAM2024G02), and the Innovation Cultivation of Beijing Academy of Science and Technology (Grant Nos. 25CB007-01 and 25CB007-02).
Corresponding Authors:  Xue-Peng Sun, Tian-Xi Sun     E-mail:  sunxuepeng@brc.ac.cn;stx@bnu.edu.cn

Cite this article: 

Shang-Kun Shao(邵尚坤), Tian-Yu Yuan(袁天语), Cheng-Bo Li(李成波), Xing-Yi Wang(王兴艺), Lu Hua(华陆), Yu-Chuan Zhong(钟玉川), Jin-Yue Hu(胡锦玥), Meng-Fang Chen(陈盟方), Xue-Peng Sun(孙学鹏), and Tian-Xi Sun(孙天希) Detailed simulation and characterization of double paraboloidal monocapillary for laboratory x-ray sources 2025 Chin. Phys. B 34 124101

[1] Sun T, Liu Z, Li Y, Wang G, Zhu G, Ding X, Xu Q, Liu H, Luo P, Pan Q, Lin X and Teng Y 2009 Spectrochim. Acta B 64 1194
[2] Liu H, Liu Z, Sun T, Peng S, Ma Y, Sun W, Li Y, Lin X, Zhao W, Zhao G, Luo P, Pan Q and Ding X 2013 Nucl. Instrum. Methods Phys. Res. A 723 1
[3] Sun T, Liu Z and Ding X 2007 Chem. Phys. Lett. 439 412
[4] Zeng X, Duewer F, Feser M, Huang C, Lyon A, Tkachuk A and YunW 2008 Appl. Opt. 47 2376
[5] Li F Z, Liu Z G and Sun T X 2016 Rev. Sci. Instrum. 87 093106
[6] Zhu Y, Wang Y, Sun T, Sun X, Zhang X, Liu Z, Li Y and Zhang F 2018 Appl. Radiat. Isot. 137 172
[7] Shao S, Li H, Yuan T, Sun X, Hua L, Liu Z and Sun T 2023 Chin. Phys. B 32 080702
[8] Stern E A, Kalman Z, Lewis A and Lieberman K 1988 Appl. Opt. 27 5135
[9] Bilderback Donald H, Hoffman Stephen A and Thiel Daniel J 1994 Science 263 201
[10] Kuczumow A and Larsson S 1994 Appl. Opt. 33 7928
[11] Huang R and Bilderback D H 2001 Nucl. Instrum. Meth. A 467 978
[12] Lamb J S, Cornaby S, Andresen K, Kwok L, Park H Y, Qiu X Y, Smilgies D M, Bilderback D H and Pollack L 2007 J. Appl. Crystallogr. 40 193
[13] Li Y L, Wang Y B, Lu W E, Kong X D, Han L and Zhao H B 2021 Chin. Phys. B 30 050703
[14] Sirenko A A, Kazimirov A, Cornaby S, Bilderback D H, Neubert B, Brückner P, Scholz F, Shneidman V and Ougazzaden A 2006 Appl. Phys. Lett. 89 181926
[15] Barrea R A, Huang R, Cornaby S, Bilderback D H and Irving T C 2009 J. Synchrotron Radiat. 16 76
[16] Woll A R, Mass J, Bisulca C, Huang R, Bilderback D H, Gruner S and Gao N 2006 Appl. Phys. A 83 235
[17] Huang R and Bilderback D H 2006 J. Synchrotron Radiat. 13 74
[18] Lin X Y, Li Y D, Sun T X and Pan Q L 2010 Chin. Phys. B 19 070205
[19] Hudec R, Valníček B, Svatek L, Landa V and Fiedorowicz H 1988 Le Journal de Physique Colloques 49 C1
[20] Jiang B, Liu Z, Sun X, Sun T, Deng B, Li F, Yi L, Yuan M, Zhu Y, Zhang F, Xiao T, Wang J and Tai R 2017 Opt. Commun. 398 91
[21] Shao S, Li H, Tao F, Wang Y, Zhang X, Yuan T, Sun X, Liu Z, Deng B and Sun T 2021 Nucl. Instrum. Methods Phys. Res. A 1014 165735
[22] Takano A, Maehata K, Iyomoto N, Hara T, Mitsuda K, Yamasaki N and Tanaka K 2018 IEEE Trans. Nucl. Sci. 65 758
[23] Zymierska D 1996 Acta Phys. Pol. A 89 347
[24] Li Y D, Lin X Y, Tan Z Y, Sun T X and Liu Z G 2011 Chin. Phys. B 20 040702
[25] See https://physics.nist.gov/PhysRefData/FFast/html/form.html for the “Basic Information” (last accessed April 02, 2025), retrieved
[26] Wang Y, Li Y, Shao S, Zhang X, Li Y, Sun X, Tao F, Deng B and Sun T 2020 Opt. Commun. 464 125544
[1] Property of slice square polycapillary x-ray optics
Shi-Qi Peng(彭诗棋), Zhi-Guo Liu(刘志国), Tian-Xi Sun(孙天希), Kai Wang(王锴), Long-Tao Yi(易龙涛), Kui Yang(杨魁), Man Chen(陈曼), Jin-Bang Wang(王金榜). Chin. Phys. B, 2016, 25(2): 024102.
No Suggested Reading articles found!