330
R. Forty and O. Ullaland
9. J. Blazej et al., Gallium-based avalanche photodiode optical crosstalk, Nucl. Instrum.
Methods Phys. Res., A: 567 (2006) 239–241, and references therein.
10. J. Va’vra et al., A 30 ps timing resolution for single photons with multi-pixel Burle MCPPMT, Nucl. Instrum. Methods Phys. Res., A: 572 (2007) 459–462
11. A.N. Akindinov et al., Latest results on the performance of the multigap resistive plate
chamber used in the ALICE TOF, Nucl. Instrum. Methods Phys. Res., A: 533 (2004) 74–
78
12. J. Va’vra, PID techniques: Alternatives to RICH methodes, Nuclear Instruments & Methods
in Physics Research A (2017), http://dx.doi.org/10.1016/j.nima.2017.02.075
13. A. Bravar, Recent Results from NA61 (Flux Related Systematic Uncertainties) and Recent
Results from T2K (Overall Systematic Uncertainties), http://www.t2k.org/docs/talk/225,
2015-11-06
N. Abgrall et al., Measurements of cross sections and charged pion spectra in proton-carbon
interactions at 31 GeV/c, PHYSICAL REVIEW C 84, 034604 (2011)
14. S. Afanasiev et al., The NA49 Large Acceptance Hadron Detector, CERN-EP/99-001, 6. January 1999
15. P.A. Cherenkov, Visible glow under exposure of gamma irradiation, Dokl. Acad. Nauk. USSR
2(1934)451
S.I. Vavilov, About possible reasons of blue gamma-glow of liquids, Dokl. Acad. Nauk. USSR
2(1934)457
I.M. Frank and I.E. Tamm, Coherent Radiation of Fast Electrons in a Medium, Dokl. Acad.
Nauk. USSR 14(1937)107
16. J.V. Jelley, ˇ
Cerenkov Radiation and its Application, London: Pergamon Press, 1958
V.P. Zrelov, ˇ
Cerenkov Radiation in High Energy Physics, Jerusalem, Israel Program for
Scientific Translations, 1970
17. J. Séguinot, Les Compteurs Cherenkov: Applications et Limites pour l’Identification des
Particules. Développements et Perspectives, CERN-EP/89–92, LPC/89-25, 31 juillet 1989
18. J.D. Jackson, Classical Electrodynamics, John Wiley & Sons, Inc.,1998,
ISBN 0-471-30932-X
19. W.W.M. Allison and P.R.S. Wright, The Physics of Charged Particle Identification, in:
T. Ferbel (ed.), Experimental Techniques in High-Energy Nuclear and Particle Physics, ISBN
981-02-0867-7, World Scientific Publishing Company, Inc. 1999.
20. Landolt-Börnstein, Eigenschaften der Materie in ihren Aggregatzuständen, 8. Teil Opische
Konstanten.
21. C.C. Chen and W.A. Steel, Molecular calculation of the dielectric constant of N 2 and CO 2 , J.
Chem. Phys., 75(1)383–387
22. DuPont, Freon Technical Bulletin B-32, 32A
23. P.W. Langhoff and M. Karplus, Pade Summation of the Cauchy Equation, Journal of the
Optical Society of America, 59(1969)863
24. J. Koch, Nova acta Soc. Upsal. (4) Nr. 5, 1909
C. u. M. Cuthbertson, Proc. Roy. Soc. London (A) 83, 151, 1910
25. E. Albrecht et al., VUV absorbing vapours in n-perfluorocarbons, Nucl. Instr. and Meth. in
Phys. Res. A 510(2003)262–272
26. D.E. Gray (ed.), American Institute of Physics handbook, McGraw-Hill Book Company. Inc.,
1957
27. E. Efimov and S. Stone, A novel LiF radiator for RICH detectors, Nucl. Instr. and Meth. in
Phys. Res. A 371(1996)79–81
28. B. Dey et al., Design and performance of the focusing DIRC detector, Nuclear Instruments
and Methods in Physics Research A 775(2015)112–131
J. Schwiening, The DIRC detector at the SLAC B-factory PEP-II: operational experience and
performance for physics application, Nucl. Instr. and Meth. in Phys. Res. A 502(2003)67–75
P. Coyle et al., The DIRC counter: a new type of particle identification device for B factories,
Nucl. Instr. and Meth. in Phys. Res. A 343(1994)292–299
R. Forty and O. Ullaland
9. J. Blazej et al., Gallium-based avalanche photodiode optical crosstalk, Nucl. Instrum.
Methods Phys. Res., A: 567 (2006) 239–241, and references therein.
10. J. Va’vra et al., A 30 ps timing resolution for single photons with multi-pixel Burle MCPPMT, Nucl. Instrum. Methods Phys. Res., A: 572 (2007) 459–462
11. A.N. Akindinov et al., Latest results on the performance of the multigap resistive plate
chamber used in the ALICE TOF, Nucl. Instrum. Methods Phys. Res., A: 533 (2004) 74–
78
12. J. Va’vra, PID techniques: Alternatives to RICH methodes, Nuclear Instruments & Methods
in Physics Research A (2017), http://dx.doi.org/10.1016/j.nima.2017.02.075
13. A. Bravar, Recent Results from NA61 (Flux Related Systematic Uncertainties) and Recent
Results from T2K (Overall Systematic Uncertainties), http://www.t2k.org/docs/talk/225,
2015-11-06
N. Abgrall et al., Measurements of cross sections and charged pion spectra in proton-carbon
interactions at 31 GeV/c, PHYSICAL REVIEW C 84, 034604 (2011)
14. S. Afanasiev et al., The NA49 Large Acceptance Hadron Detector, CERN-EP/99-001, 6. January 1999
15. P.A. Cherenkov, Visible glow under exposure of gamma irradiation, Dokl. Acad. Nauk. USSR
2(1934)451
S.I. Vavilov, About possible reasons of blue gamma-glow of liquids, Dokl. Acad. Nauk. USSR
2(1934)457
I.M. Frank and I.E. Tamm, Coherent Radiation of Fast Electrons in a Medium, Dokl. Acad.
Nauk. USSR 14(1937)107
16. J.V. Jelley, ˇ
Cerenkov Radiation and its Application, London: Pergamon Press, 1958
V.P. Zrelov, ˇ
Cerenkov Radiation in High Energy Physics, Jerusalem, Israel Program for
Scientific Translations, 1970
17. J. Séguinot, Les Compteurs Cherenkov: Applications et Limites pour l’Identification des
Particules. Développements et Perspectives, CERN-EP/89–92, LPC/89-25, 31 juillet 1989
18. J.D. Jackson, Classical Electrodynamics, John Wiley & Sons, Inc.,1998,
ISBN 0-471-30932-X
19. W.W.M. Allison and P.R.S. Wright, The Physics of Charged Particle Identification, in:
T. Ferbel (ed.), Experimental Techniques in High-Energy Nuclear and Particle Physics, ISBN
981-02-0867-7, World Scientific Publishing Company, Inc. 1999.
20. Landolt-Börnstein, Eigenschaften der Materie in ihren Aggregatzuständen, 8. Teil Opische
Konstanten.
21. C.C. Chen and W.A. Steel, Molecular calculation of the dielectric constant of N 2 and CO 2 , J.
Chem. Phys., 75(1)383–387
22. DuPont, Freon Technical Bulletin B-32, 32A
23. P.W. Langhoff and M. Karplus, Pade Summation of the Cauchy Equation, Journal of the
Optical Society of America, 59(1969)863
24. J. Koch, Nova acta Soc. Upsal. (4) Nr. 5, 1909
C. u. M. Cuthbertson, Proc. Roy. Soc. London (A) 83, 151, 1910
25. E. Albrecht et al., VUV absorbing vapours in n-perfluorocarbons, Nucl. Instr. and Meth. in
Phys. Res. A 510(2003)262–272
26. D.E. Gray (ed.), American Institute of Physics handbook, McGraw-Hill Book Company. Inc.,
1957
27. E. Efimov and S. Stone, A novel LiF radiator for RICH detectors, Nucl. Instr. and Meth. in
Phys. Res. A 371(1996)79–81
28. B. Dey et al., Design and performance of the focusing DIRC detector, Nuclear Instruments
and Methods in Physics Research A 775(2015)112–131
J. Schwiening, The DIRC detector at the SLAC B-factory PEP-II: operational experience and
performance for physics application, Nucl. Instr. and Meth. in Phys. Res. A 502(2003)67–75
P. Coyle et al., The DIRC counter: a new type of particle identification device for B factories,
Nucl. Instr. and Meth. in Phys. Res. A 343(1994)292–299
