334
R. Forty and O. Ullaland
83. V.L. Ginzburg and I.M. Frank, Radiation of a uniformly moving electron due to its transition
from one medium into another, Zh. Eksp. Teor. Fiz. 16 (1946)15.
a shortened (English) version J. Phys. USSR 9 (1945), 353.
84. C.W. Fabjan and W. Struczinski, Coherent Emission of Transition Radiation in Periodic
Radiators, Physics Letters 57B(1975)483–486
85. C. Leroy and P-G. Rancoita, Principles of radiation interaction in matter and detection, World
Scientific, 2004, ISBN: 978-9812389091
86. M.L.Ter-Mikaelian, High-Energy Electromagnetic Processes in Condensed Media, John
Wiley & Sons, Inc, 1972, ISBN 0-471-85190-6
87. G.N. Afanasiev, V.G. Kartavenko and Yu.P. Stepanovsky, Vavilov-Cherenkov and transition radiations on the dielectric and metallic spheres, Journal of Mathematical Physics,
44(2003)4026–4056
88. V.L. Ginzburg and V.N. Tsytovich, On the Derivation of the Transition Radiation Intensity,
Physics Letters 79A(1980)16–18
V.L. Ginzburg, On the radiation from uniformly moving sources, Nucl. Instrum. Methods
Phys. Res., A: 248 (1986) 13–16
89. Charles Kittel, Introduction to solid state physics. - 7th ed. / New York, NY: Wiley, 1996
90. B. Dolgoshein, Transition radiation detectors, Nucl. Instrum. Methods Phys. Res., A: 326
(1993) 434–469
91. L.C.L. Yuan, C.L. Wang and H. Uto, Formation-Zone effects in transition radiation due to
ultrarelativistic particles, Phys. Rev. Lett. 25 (1970) 1513–1515
92. J.E. Lilienfeld, Die sichtbare Strahlung des Brennecks von Röntgenröhren, Physik Zeitschrift,
XX(12) 280, 1919
Mario Rabinowitz, Lilienfeld Transition Radiation Brought to Light, physics/0307047 (July
2003)
93. H. Boersch, C. Radeloff and G. Sauerbrey, Experimental Detection of Transition Radiation,
Phys. Rev. Lett. 7(1961)52–54
94. X. Artru et al., Experimental investigations on geometrical resolution of optical transition
radiation (OTR), Nucl. Instrum. Methods Phys. Res., A: 410 (1998) 148–158
95. J. Ruˆ ziˆ zka and J. Mehes, Properties of optical transition radiation for charged particle inclined
flight through a finite thick plate IX, Nucl. Instrum. Methods Phys. Res., A: 250 (1986) 491–
502, and references therein.
96. S.D. Borovkov et al., On studying the possibility to use optical transition radiation for proton
beam diagnostics, Nucl. Instrum. Methods Phys. Res., A: 294 (1989) 101–107
97. J. Ruzicka et al., On optical transition radiation of charged particles in SiO 2 -aerogels, Nucl.
Instrum. Methods Phys. Res., A: 384 (1997) 387–402
98. X. Artru, G.B. Yodh and G. Mennessier, Practical theory of the multilayered transition
radiation detector, Phys. Rev. D 16(1975)1289–1306
99. L. Fayard, Transition radiation, in: Instrumentation en Physique Nucléaire et en Pysique des
Particules, les éditions de physiques, 1988, 327–340
100. J. Apostolakis et al., Parameterization models for X-ray transition radiation in the GEANT4
package, Comput. Phys. Commun. 132, 3 (2000) 241–50
V.M. Grichine and S.S. Sadilov, GEANT4 X-ray transition radiation package, Nucl. Instrum.
Methods Phys. Res., A: 253 (2006) 299–302
101. F. Sauli, Principles of Operation of Multiwire Proportional and Drift Chambers, CERN 77–09
102. P. Cwetanski, Straw performance studies and quality assurance for the ATLAS transition
radiation tracker, Ph.D. Thesis, Helsinki 2006, ISBN 952-10-2122-5
103. The ALICE Collaboration, K. Aamodt et al., The ALICE experiment at the CERN LHC, 2008
JINST 3 S08002
104. The ATLAS Collaboration, G. Aad et al., The ATLAS Experiment at the CERN Large Hadron
Collider, 2008 JINST 3 S08003
105. The ATLAS TRT collaboration, E. Abat et al., The ATLAS TRT Barrel Detector, 2008 JINST
3 P02014
R. Forty and O. Ullaland
83. V.L. Ginzburg and I.M. Frank, Radiation of a uniformly moving electron due to its transition
from one medium into another, Zh. Eksp. Teor. Fiz. 16 (1946)15.
a shortened (English) version J. Phys. USSR 9 (1945), 353.
84. C.W. Fabjan and W. Struczinski, Coherent Emission of Transition Radiation in Periodic
Radiators, Physics Letters 57B(1975)483–486
85. C. Leroy and P-G. Rancoita, Principles of radiation interaction in matter and detection, World
Scientific, 2004, ISBN: 978-9812389091
86. M.L.Ter-Mikaelian, High-Energy Electromagnetic Processes in Condensed Media, John
Wiley & Sons, Inc, 1972, ISBN 0-471-85190-6
87. G.N. Afanasiev, V.G. Kartavenko and Yu.P. Stepanovsky, Vavilov-Cherenkov and transition radiations on the dielectric and metallic spheres, Journal of Mathematical Physics,
44(2003)4026–4056
88. V.L. Ginzburg and V.N. Tsytovich, On the Derivation of the Transition Radiation Intensity,
Physics Letters 79A(1980)16–18
V.L. Ginzburg, On the radiation from uniformly moving sources, Nucl. Instrum. Methods
Phys. Res., A: 248 (1986) 13–16
89. Charles Kittel, Introduction to solid state physics. - 7th ed. / New York, NY: Wiley, 1996
90. B. Dolgoshein, Transition radiation detectors, Nucl. Instrum. Methods Phys. Res., A: 326
(1993) 434–469
91. L.C.L. Yuan, C.L. Wang and H. Uto, Formation-Zone effects in transition radiation due to
ultrarelativistic particles, Phys. Rev. Lett. 25 (1970) 1513–1515
92. J.E. Lilienfeld, Die sichtbare Strahlung des Brennecks von Röntgenröhren, Physik Zeitschrift,
XX(12) 280, 1919
Mario Rabinowitz, Lilienfeld Transition Radiation Brought to Light, physics/0307047 (July
2003)
93. H. Boersch, C. Radeloff and G. Sauerbrey, Experimental Detection of Transition Radiation,
Phys. Rev. Lett. 7(1961)52–54
94. X. Artru et al., Experimental investigations on geometrical resolution of optical transition
radiation (OTR), Nucl. Instrum. Methods Phys. Res., A: 410 (1998) 148–158
95. J. Ruˆ ziˆ zka and J. Mehes, Properties of optical transition radiation for charged particle inclined
flight through a finite thick plate IX, Nucl. Instrum. Methods Phys. Res., A: 250 (1986) 491–
502, and references therein.
96. S.D. Borovkov et al., On studying the possibility to use optical transition radiation for proton
beam diagnostics, Nucl. Instrum. Methods Phys. Res., A: 294 (1989) 101–107
97. J. Ruzicka et al., On optical transition radiation of charged particles in SiO 2 -aerogels, Nucl.
Instrum. Methods Phys. Res., A: 384 (1997) 387–402
98. X. Artru, G.B. Yodh and G. Mennessier, Practical theory of the multilayered transition
radiation detector, Phys. Rev. D 16(1975)1289–1306
99. L. Fayard, Transition radiation, in: Instrumentation en Physique Nucléaire et en Pysique des
Particules, les éditions de physiques, 1988, 327–340
100. J. Apostolakis et al., Parameterization models for X-ray transition radiation in the GEANT4
package, Comput. Phys. Commun. 132, 3 (2000) 241–50
V.M. Grichine and S.S. Sadilov, GEANT4 X-ray transition radiation package, Nucl. Instrum.
Methods Phys. Res., A: 253 (2006) 299–302
101. F. Sauli, Principles of Operation of Multiwire Proportional and Drift Chambers, CERN 77–09
102. P. Cwetanski, Straw performance studies and quality assurance for the ATLAS transition
radiation tracker, Ph.D. Thesis, Helsinki 2006, ISBN 952-10-2122-5
103. The ALICE Collaboration, K. Aamodt et al., The ALICE experiment at the CERN LHC, 2008
JINST 3 S08002
104. The ATLAS Collaboration, G. Aad et al., The ATLAS Experiment at the CERN Large Hadron
Collider, 2008 JINST 3 S08003
105. The ATLAS TRT collaboration, E. Abat et al., The ATLAS TRT Barrel Detector, 2008 JINST
3 P02014
