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В обзоре рассмотрены принципы работы и возможности рентгеновской фокусирующей капиллярной и пористой оптики. Особое внимание уделяется поликапиллярной оптике, конфокальной технике рентгеновского флуоресцентного анализа, а также широкоугольной оптике «глаза лобстера».
Лидер В. В. 2021. ФОКУСИРУЮЩАЯ КАПИЛЛЯРНАЯ И ПОРИСТАЯ РЕНТГЕНОВСКАЯ ОПТИКА. PREPRINTS.RU. https://doi.org/
1. Список литературы
2. G.E. Ice, J.D. Budai, J.W.L. Pang Science 334 1234 (2011)
3. G. Schmahl, D. Rudolph, G. Schneider et al. Optik 97, 181 (1994)
4. P. Guttmann, X. Zeng, M. Feser et al. J. Phys.: Conf. Ser. 186, 012064 (2009)
5. M. Howells, C. Jacobsen, T. Warwick, A. Bos in: Science of Microscopy, Hawkes P.W. and Spence J.C.H., eds, II, 835–926, Springer, New York (2007)
6. H. Wolter Ann. Phys. 10 94 (1952)
7. H. Wolter Ann. Phys. 10 286 (1952)
8. M. Bavdaz, M. Collon, M. Beijersbergen et al. X-ray Opt. Instrum. 2010, ID 295095 (2010)
9. W.C. Priedhorsky, A.G. Peele, K.A. Nugene Mon. Not. R. Astron. Soc. 279 733 (1996)
10. С.Б. Дабагов УФН 173 1083 (2003)
11. K. Furuta, Y. Nakayama, M. Shoji et al. Rev. Sei. Instrum. 64 135 (1993)
12. L. Wang, B.K. Rath, W.M. Gibson et al. J. Appl. Phys. 80 3628 (1996)
13. G.J. Chen, F. Cerrina, K.F. Voss et al. Nucl. Instr. Meth. A. 347 407 (1994)
14. J.B. Ullrich, V.E. Kovantsev, C.A. MacDonald J. Appl. Phys. 14 5933 (1993)
15. В.А. Аркадьев, А.И. Коломийцев, М.А. Кумахов и др. УФН 157, 529 (1989)
16. C.A. MacDonald, W.M. Gibson X Ray Spectrom. 32, 258 (2003)
17. Suparmi, Cari, L. Wang et al. J. Appl. Phys. 90 5363 (2001)
18. В.Е. Сторижко, М.В. Ильяшенко, В.Б. Молодкин и др. Успехи физ. мет. 11 1 (2010)
19. D.H. Bilderback X-Ray Spectrom. 32, 195 (2003)
20. N.R. Charnley, P.J. Potts, J.V.P. Long J. Anal. At. Spectrom. 9, 1185 (1994)
21. X. Zeng, F. Duewer, M. Feser et al. Appl. Opt. 47, 2376 (2008)
22. A. Bjeoumikhov, S. Bjeoumikhova, R. Wedell Part. Part. Syst. Charact. 22, 384 (2005)
23. W. De Nolf, K. Janssens Surf. Interface Anal. 42, 411 (2010)
24. I. Snigireva , A. Snigirev J. Environ. Monit. 8, 33 (2006)
25. D.J. Thiel, D.H. Bilderback, A. Lewis, E.A. Stern Nucl Instr. Meth. A 317, 597 (1992)
26. D.H. Bilderback, S.A. Hoffman, D.J. Thiel Science 263, 201 (1994)
27. S.A. Hoffman, D.J. Thiel, D.H. Bilderback Nucl. Instr. Meth. A 347, 384 (1994)
28. L. Vincze, K. Janssens, F. Adams et al. Adv. X-ray Anal. 41, 252 (1999)
29. D.X. Balaic, Z. Barnea, K.A. Nugent, et al. J. Synchrotron Radiat. 3, 289 (1996)
30. J. Chen, C. Wu, J. Tian et al. Appl. Phys. Lett. 92, 233104 (2008)
31. A. Sorrentino, J. Nicolás, R. Valcárcel, F.J. Chichón J. Synchrotron Rad. 22 1112 (2015)
32. R. Huang, T. Szebenyi, M. Pfeifer et al. J. Phys.: Conf. Ser. 493, 012034 (2014)
33. P. Engström, S. Larsson, A. Rindby, B. Stocklassa Nucl. Instr. Meth. В 36, 222 (1989)
34. A. Merkle, J. Gelb, L. Lavery Microsc. Microanal. 19, 1314 (2013)
35. M. Müller, T. Mey, J. Niemeyer, K. Mann Opt. Express. 22, 23489-95 (2014)
36. M. Benk, K. Bergmann, D. Schäfer, T. Wilhein Opt. Lett. 33, 2359(2008)
37. L. Vincze, A. Somogyi, J. Osan et al. Anal. Chem. 74, 1128 (2002)
38. J. Bartoll, S. Röhrs, A. Erko et al. Spectrochim. Acta B 59, 1587 (2004)
39. K.E. Limburg, A. Lochet, D. Driscoll et al. X-ray Spectrum. 36, 336 (2007)
40. R.T. Lopes, I. Lima, G.R. Pereira, C. A. Perez. Pramana 76, 271 (2011)
41. R. Mroczka, G. Żukociński, R. Łopucki Proc. SPIE 10235, 102350E (2017)
42. Q.C. Lind, W. De Nolf, K. Janssen, B. Salbu J. Environ. Radioact. 123, 63 (2013)
43. J. Wang, Y. Chen-Wiegart, J. Wang Nat. Commun. 5, 4570 (2014)
44. A. Merkle, J. Gelb. Microscopy Today 21, 10 (2013)
45. C. Tan, S.R. Daemi, T.M.M. Heenan et al. J. Electrochem. Soc. 167, 060512 (2020)
46. R. Li, S. Cornaby, M. Kamperman, D.-M. Smilgiers J. Synchrotron Rad. 18, 697 (2011)
47. A. A. Sirenko, A. Kazimirov, R. Huang et al. J. Appl. Phys. 97, 063512 (2005)
48. F. Li, Z. Liu, T. Sun J. Appl. Cryst. 49, 627 (2016)
49. A. Kazimirov, D.H. Bilderback, R. Huang et al. J. Phys. D: Appl. Phys. 37, L1 (2004)
50. R.H. Pantell, P.S. Chung IEEE J. Quant. Electron. 14, 694 (1978)
51. В.А. Бушуев, М.Н. Оруджалиев, Р.Н. Кузьмин ЖТФ 59, 153 (1989)
52. M.A. Kumakhov Nucl. Instr. Meth. B 48, 283 (1990)
53. M.A. Kumakhov, F.F. Komarov Phys. Rep. 191, 289 (1990)
54. M.A. Kumakhov X-ray Spectrom. 29, 343 (2000)
55. N. Gao, K. Janssens, in: X-Ray Spectrometry: Recent Technological Advances, ed. by K. Tsuji, J. Injuk, R. Van Grieken (Wiley, Chichester, 2004), Р. 89
56. C.A. MacDonald X-Ray Opt. Instrum. 2010, 1 (2010)
57. А. Болотоков, Д. Зайцев, А. Лютцау, А. Щербаков Аналитика №4 14 (2012)
58. V. Beloglazov, N. Langhoff, V. Tuchin et al. J. X ray. Sci. Technol. 13, 179 (2005)
59. C.A. MacDonald, J.C. Petruccelli J. Phys.: Conf. Ser. 776, 012001 (2016)
60. D. Wegrzynek, R. Mroczka, A. Markowicz et al. X-Ray Spectrom. 37, 635 (2008)
61. T. Sun, Z. Liu, Y. Li, et al. Spectrochim. Acta B 64 1194 (2009)
62. C.A. MacDonald, W.M. Gibson Proc. SPIE 2519, 186 (1995)
63. T. Sun, C.A. MacDonald J. Appl. Phys. 113, 053104 (2013)
64. T. Sun, C.A. MacDonald J. Xray Sci. Technol. 23 141 (2015)
65. S. Bashir, S. Tahir, C. MacDonald, J.C. Petruccelli Opt. Commun. 369, 28 (2016)
66. S.M. Owens, J.B. Ullrich, I. Ponomarev et al. Proc. SPIE 2859, 200 (1996)
67. C.A. MacDonald, S.M. Owens, W.M. Gibson J. Appl. Cryst. 32, 160 (1999)
68. N. Gao, I. Ponomarev, Q.F. Xiao et al. Appl. Phys. Lett. 69, 1529 (1996)
69. N. Gao, I. Ponomarev, Q.F. Xiao et al. Appl. Phys. Lett. 71, 3441 (1997)
70. Y. Yan, W.M. Gibson Adv. X -Ray Anal. 45, 298 (2002)
71. M. Alfeld, J.V. Pedroso, M. van E.Hommes, et al. J. Anal. At. Spectrom. 8, 760 (2013)
72. H. Bronk, S. Röhrs, A. Bjeoumikhov et al. J. Anal. Chem. 371, 307 (2001)
73. M. Haschke, U. Rossek, R. Tagle, U. Waldschlager Adv. X-Ray Anal. 55, 286 (2012)
74. K. Trentelman, M. Bouchard, M. Ganio et al. X-Ray Spectrom. 39, 159 (2010)
75. K. Trentelman, K. Janssens, G.van der Snickt et al. Appl. Phys. A 121, 801 (2015)
76. A. Martins, C. Albertson, C. McGlinchey, J. Dik Herit. Sci. 4, 22 (2016)
77. A. Martins, J. Coddington, G. van der Snickt et al. Herit. Sci. 4, 33 (2016)
78. J.R. Duivenvoorden, A. Käyhkö, E. Kwakkel, J. Dik Herit. Sci. 5, 6 (2017)
79. M. Hrnjića, G.A. Hagen-Petera, T. Bircha et al. Nucl. Instr. Meth. B 478, 11 (2020)
80. L. Vincze, F. Wei, K. Proost et al. J. Anal. At. Spectrom. 17, 177 (1997)
81. A. Hofmann, C.A. Freinberg-Truffas, S.M. Osens et al. Nucl. Instr. Meth. B 133, 145 (1997)
82. K. Proost, L. Vincze, K. Janssens et al. X Ray Spectrom. 32, 215 (2003)
83. B. Tomik , J. Chwiej, M. Szczerbowska-Boruchowska et al. Neurochem. Res. 31, 321 (2006)
84. T. Sun, Z. Liu, B. He et al. Nucl. Instr. Meth. A 574, 285 (2007)
85. T. Sun, M. Zhang, Z. Liu et al. J. Synchrotron Rad. 16, 116 (2009)
86. A.D. Surowka, P. Wrobel, D. Adamek et al. Metallomics 7, 1522 (2015)
87. W.M. Gibson, M.A. Kumakhov Proc. SPIE 1736, 172 (1993)
88. В.И. Николаев, Е.В. Чижова Научное приборостроение 21, 3 (2011)
89. X. Ding, N. Gao, G. Havrilla Proc. SPIE 4144, 174 (2000)
90. K. Nakano, K. Tsuji J. Anal. At. Spectrom. 25, 562 (2010)
91. T. Sun, X. Ding Rev. Anal. Chem. 34 45 (2015)
92. A.R. Woll, D. Agyeman-Budu, S. Choudhury et al. J. Phys.: Conf. Ser. 493, 12028 (2014)
93. G. Chen, S. Chu, T. Sun, et al. J. Synchrotron Rad. 24, 1000 (2017)
94. D. Hampai, Yu.M. Cherepennikov, A. Liedl et al. JINST 13 C04024 (2018)
95. S. Bauters, P. Tack, J.H. Rudloff-Grund et al. Anal. Chem. 90, 2389 (2018)
96. K. Tsuji, K. Nakano X-Ray Spectrom. 36, 145 (2007)
97. T. Nakazawa, K. Tsuji X-Ray Spectrom. 42, 374 (2013)
98. B. Kanngiesser, W. Malzer, A.F. Rodrigues, I. Reiche Spectrochim. Acta B 60, 41 (2005)
99. L. Xiaoyan, W. Zhihong, S. Tianxi et al. Nucl. Instr. Meth. B 266, 2638 (2008)
100. I. Mantouvalou, K. Lange, T. Wolff, et al. J. Anal. At. Spectrom. 25, 554 (2010)
101. K. Laclavetine, F. J. Ager, J. Arquillo et al. Microchem. J. 125, 62 (2016)
102. Z.J. Xiang, Z.Y. Meng, Z.G. Liu et al. IOP Conf. Ser.: Mater. Sci. Eng. 770, 012054 (2020)
103. D. Ingerle, J. Swies, M. Iro et al. Rev. Sci. Instrum. 91, 123107 (2020)
104. B. Kanngiesser, W. Malzer, I. Mantouvalou et al. Appl. Phys. A 106, 325 (2012)
105. K. Tsuji, K. Nakano J. Anal. At. Spectrom. 26, 305 (2011)
106. T. Senkbeil, T. Mohamed, R. Simon et al. Anal. Bioanal. Chem. 408, 1487 (2016)
107. C. Seim, C. Laurenze-Landsberg, B. Schröder-Smeibidl et al. J. Anal. At. Spectrom. 29, 1354 (2014)
108. Ž. Šmit, K. Janssens, K. Proost, I. Langus Nucl. Instr. Meth. B 219–220, 35 (2004)
109. B. Kanngiesser, W. Malzer, I. Reiche Nucl. Instr. Meth. B 211, 259 (2003)
110. A.R. Woll, D.H. Bilderback, S. Gruner et al. J. Mass Mater. Res. Soc. Symp. Proc. 852, 281 (2005)
111. A.R. Woll, J. Mass, C. Bisulca, et al. Studies in Conservation 53, 93 (2008)
112. Malzer W. The Rigaku Journal 23, 40 (2006)
113. I. Reiche, K. Müller, M. Eveno et al. J. Anal. At. Spectrom. 27, 1715 (2012)
114. I. Reiche, K. Müller, E. Mysak et al. Appl. Phys. A 121, 903 (2015)
115. K. Nakano, A. Tabe, S. Shimoyama, K. Tsuji Microchem. J. 126, 496 (2016)
116. I. Reiche, M. Eveno, K. Müller et al. Appl. Phys. A 122, 947 (2016)
117. P. Zhou, Z. Liu, X. Ma, et al. Nucl. Instr. Meth. B 464 111 (2020)
118. B. Kanngiesser, I. Mantouvalou, W. Malzer et al. J. Anal. At. Spectrom. 23, 814 (2008)
119. K. Nakano, K. Tsuji X-Ray Spectrom. 38, 446 (2009)
120. L. Yi, M. Qin, K. Wang et al. Appl. Phys. A 122, 856 (2016)
121. T. Nakazawa, K. Tsuji X-Ray Spectrom. 42, 123 (2013)
122. M. Qin, L. Yi, J. Wang, et al. IOP Conf. Ser.: Mater. Sci. Eng. 269, 012033 (2017)
123. K. Nakano, K. Akioka, T. Doi et al. ISIJ International. 53, 1953 (2013)
124. K. Akioka, T. Nakazawa, T. Doi, et al. Powder Diffr. 29, 151 (2014)
125. M. Menzel, A. Schlifke, M. Falk et al. Spectroc. Acta B 85, 62 (2013)
126. A.M. Baker, Y.Cai, J.M. Ziegelbauer, et al. ECS Trans. 92, 107 (2019)
127. K. Tsuji, T. Yonehara, K. Nakano Anal. Sci. 24, 99 (2008)
128. R.D. Perez, H.J. Sanchez, C.A. Perez, M. Rubio Radiat. Phys. Chem. 79, 195 (2010)
129. N. McCormick, V. Velasquez, L. Finney et al. PLoS ONE 5 e11078 (2010)
130. M. Rauwolf, A. Turyanskaya, A. Roschger et al. J. Synchrotron Rad. 24, 307 (2017)
131. L. Vincze, B. Vekemans, F.E. Brenker et al. Anal. Chem. 76, 6786 (2004)
132. S. Schmitz, A. Möller, M. Wilke et al. Eur. J. Mineral 21, 927 (2009)
133. B. Jiang, Y. Zhu, T. Sun et al. Spectrosc. Lett. 50, 545 (2017)
134. S. Choudhury, T. Swanston, T. L. Varney et al. Archaeometry 58, 207 (2016)
135. S. Choudhury, D.N. Agyeman-Budu, A.R. Woll et al. J. Anal. At. Spectrom. 32, 527 (2017)
136. D. Hampai, A. Liedl, G. Cappuccio et al. Nucl. Instr. Meth. B 402, 274 (2017)
137. K. Nakano, C. Nishi, K. Otsuki, Y. Nishiwaki, K. Tsuji Anal. Chem. 83, 3477 (2011)
138. S. Emoto, K. Otsuki, K. Nakano, K. Tsuji Adv. X-ray Anal. 56, 217 (2013)
139. X. Sun, X. Zhang, X. Wang et al. X-Ray Spectrometry 49, 267 (2020)
140. U.E.A. Fittschen, G. Falkenberg Anal. Bioanal. Chem. 400, 1743 (2011)
141. S. Schmitz, F.E. Brenker, T. Schoonjans et al. Geochim. Cosmochim. Acta 73, 5483 (2009)
142. V. Mazel, I. Reiche, V. Busignies et al. Talanta 85, 556 (2011)
143. V.G. Mihucz, G. Silversmit, I. Szalóki et al. Food Chem. 121, 290 (2010)
144. R. Giacconi, B.Rossi J. Geophys. Res. 65, 773 (1960)
145. E. Wille, M. Bavdaz Acta Astronautica 116, 50 (2015)
146. T.T. Saha, R.S. McClelland, W.W. Zhang Proc. SPIE 9144, 914418 (2014)
147. C.T. DeRoo, R. Allured, V. Cotroneo et al. J. Astron. Telesc. Instrum. Syst. 4, 019004 (2018)
148. K. Wallace, M. Bavdaz, M. Collon et al. Proc. SPIE 10567 105670U (2006)
149. M. Beijersbergen, S. Kraft, M. Bavdaz et al. Proc. SPIE 5539, 104 (2004)
150. E. Wille, K. Wallace, M. Bavdaz et al. Proc. SPIE 10565, 105652L (2017)
151. N.J. Westergaard, D.D.M. Ferreira, S. Massahi Nucl. Inst. Meth. A 873 5 (2017)
152. M. Bavdaz, D. Lumb, A. Peacock et al. Proc. SPIE 5488, 829 (2004)
153. H.N. Chapman, K.A. Nugent, S.W. Wilkins, T.J. Davis J. X-Ray Sci. Technol. 2, 117 (1990)
154. B. Laprade, R.C. Cochran, F. Langevin, M.W. Dykstra Proc SPIE 3173, 474 (1997)
155. R. Willingale, G.W. Fraser, A.N. Brunton, A.P. Martin. Exp. Astron. 8, 281 (1998)
156. M. W. Beijersbergen, M. Bavdaz, A. J. Peacock et al. Proc. SPIE 3765, 452 (1999)
157. M. Collon, M. Beijersbergen, K. Wallace et al. Proc. SPIE 6688, 668812 (2007)
158. K. Wallace, M. Collon, M. Beijersbergen et al. Proc. SPIE 6688, 66881C (2007)
159. G. J. Price, A. N. Brunton, M. W. Beijersbergen et al. Nucl. Instr. Meth. A 490, 276 (2002)
160. D. Gotz, J. Osborne, B. Cordier et al. Proc. SPIE 9144, 914423 (2014)
161. Y. Ezoe, M. Koshiishi, M. Mita et al. Appl. Opt. 45, 8932 (2006)
162. Y. Ezoe, M. Koshiishi, M. Mita et al. Nucl. Instr. Meth. A 579, 817 (2007)
163. Y. Ezoe, I. Mitsuishi, U. Takagi et al. Microsyst. Technol. 16, 1633 (2010)
164. Y. Ezoe, Y. Miyoshi, S. Kasahara et al. J. Astron. Telesc. Instrum. Syst. 4, 046001 (2018)
165. I. Mitsuishi, Y. Ezoe, U. Takagi et al. Proc. SPIE 7360, 736040 (2009)
166. R.E. Riveros, H. Yamaguchi, I. Mitsuishi et al. Appl. Opt. 49, 3511 (2010)
167. K. Nakajima, K. Fujiwara, W. Pan, H. Okuda Nat. Mater 4, 47 (2005)
168. W. H. K. Schmidt Nucl. Instr. Meth. 127 285 (1975)
169. J. R. P. Angel Astrophys. J. 233, 364 (1979)
170. H. N. Chapman, K.A. Nugent, S.W. Wilkins Rev. Sci. Instr. 62, 1542 (1991)
171. P. Kaaret, P. Geissbühler Proc. SPIE 1546, 82 (1991)
172. P. Kaaret, P. Geissbuhler, A. Chen et al. Appl. Opt. 35, 4420 (1996)
173. A.G. Peele, K.A. Nugent, A.V. Rode et al. Appl. Opt. 35, 4420 (1996)
174. L. Su, W. Li, M. Wu et al. Appl. Opt. 56, 6267 (2017)
175. T. Tamagawa, K. Uchiyama, R. Otsubo et al. J. Astron. Telesc. Instrum. Syst. 6, 025003 (2020)
176. J.L. Wiza Nucl. Instr. Meth. 162, 587 (1979)
177. V. Grubsky, M. Gertsenshteyn, K. Shoemaker, T. Jannson Proc. SPIE 6688, 66880P (2007)
178. R. Willingale, J.F. Pearson, A. Martindale et al. Proc. SPIE 9905, 99051Y (2016)
179. J.-L. Mutz, O. Bonnet, R. Fairbend et al. Proc SPIE 6479, 64790F (2007)
180. S. Peng, F. Wei, Y. Guo, Y. Ye Opt. Eng. 58, 093101 (2019)
181. S. Svendsen, E.B. Knudsen, S. Blake et al. Proc. SPIE 11119, 111191R (2019)
182. A.G. Peele, T.H.K. Irving, K.A. Nugent et al. Rev. Sci. Instrum. 72, 1843 (2001)
183. A.G. Peele, K.D. Vora, B.-Y. Shew et al. Microsyst. Technol. 13, 511 (2007)
184. G.W. Fraser, A.N. Brunton, N.P. Bannister et al. Proc. SPIE 4497, 115 (2002)
185. G. Branduardi-Raymont, S.F. Sembay, J.P. Eastwood et al. Exp. Astron. 33, 403 (2012)
186. M.R. Collier, F. Scott Porter, D.G. Sibeck et al. Rev. Sci. Instrum. 86, 071301 (2015)
187. B.M. Walsh, M.R. Collier, K.D. Kuntz et al. J. Geophys. Res. Space Physics 121, 3353 (2016)
188. W. Raab, G. Branduardi-Raymont, C. Wang et al. Proc. SPIE 9905, 990502 (2016)
189. C. Feldman, J. Pearson, R. Willingale et al. Proc. SPIE 10399, 103991Q (2017)
190. L. Amati, P. O’Brien, D. Götz et al. Adv. Space Res. 62, 191 (2018)
191. P. Korecki, K.M. Sowa, B.R. Jany, F. Krok Phys. Rev. Lett. 116, 233902 (2016)
192. K. M. Sowa, B. R. Jany, P. Korecki Optica 5, 577 (2018)
193. K. Nomoto, R. Hata, K. Doi et al. Proc. SPIE 10760, 107600A (2018)
194. K. Doi, K. Nomoto, Y. Nawaki et al. Proc. SPIE 11108, 11080V (2019)
195. M. Gertsenshteyn, T. Jannson, G. Savant Proc. SPIE 5922, 59220N (2005)
196. C. Ashcraft Creation 32, 21 (2010)