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Positronium (a hydrogen-like bound state of an electron and a positron) is a convenient probe to determine the sizes of subnanometric free volumes (voids) in condensed matter. A review of experimental methods used in positron spectroscopy and examples of their application to the free volume studies are presented.
J. Govaerts, M. Van Caillie, Phys. Lett . B 381 , 451 (1996); A. Czarnecki, S.G. Karshenboim, Proc. 14th Intl. Workshop on High Energy Physics and Quantum Field Theory , May 1999, Moscow.
R.E. Bell and R.L. Graham, Phys. Rev . 90, 644 (1953).
B. Jaduszliwer, W.C. Keever, D.A.L. Paul, Can. J. Phys . 50, 1414 (1972).
A.P. Mills Jr. and E.M. Gullikson, Appl. Phys. Lett . 49, 1121 (1986).
A.P. Mills Jr., Phys. Rev. Lett . 41, 1828 (1978).
G. Consolati, R. Ferragut, A. Galarneau, F. Di Renzo, F. Quasso, Chem. Soc. Rev. 42 , 3821 (2013).
A.P. Mills Jr., Phys. Rev. Lett. 46 , 717 (1981).
K. Michishio, T. Tachibana, R.H. Suzuki, K. Wada, A. Yagishita, T. Hyodo, Y. Nagashima, Appl. Phys. Lett 100 , 254102 (2012).
T. Goworek, W. Górniak, J. Wawryszczuk, Nucl. Instrum. Methods Phys . Res. A331 , 560 (1992).
M. Laval, M. Moszy Ĕ ski, R. Allemand, E. Comoreche, P. Guinet, R. Odru, J. Vacher, Nucl. Instrum. Methods Phys. Res. 206 , 169 (1983).
F. Becvář, J. Cížek, I. Procházka, I. Janotová, Nucl. Instrum. Methods Phys. Res., Sect. A 539, 372 (2005).
K. Maier, R. Myllylä, in “ Positron Annihilation ”.Eds. R.R. Hashiguci, K. Fujiwara, Japan Inst. of Metals, Sendai 1982. p.829; H.E. Schaefer, W. Weiler, in “ Positron Annihilation“ Eds. P.C. Jain , E.M. Singru, K. Gopinathan, World Sci, 1985, p.584.
]Y. Shirai, M. Sakamura, I. Shishido, M. Yamaguchi, J. Japan Inst.
Metals 59 , 679 (1995).
P Chalermkarnon, I. Shishido, M. Yuga, H. Araki, Y. Shirai, J. Japan Inst. Metals 66 , 1004 (2002).
F. Reurings, A. Laakso, K. Rystölä, A, Pelli, K. Saarinen, Appl. Phys. Sci. 252, 3154 (2006).
M. Butterling, W. Anwand, G. Brauer, T.E. Cowan, A. Hartmann, M. Jungmann, K. Kosev, R. Krause-Rehberg, A. Krille, R. Schewengner, phys. stat. sol. (a) 207 , 334 (2010).
R.L. Garwin, Phys. Rev . 91, 1571 (1953).
A. Dupasquier, P. De Natale, A. Rolando, Phys. Rev . B43, 10036
(1991).
O.E. Mogensen, G. Kvajić, M. Eldrup and M. Milošević-Kvajić, Phys. Rev. 84,71 (1971).
W. Brandt, G. Coussot, R. Paulin, Phys. Rev. Lett . 23, 522 (1969); also G. Coussot, Ph.D. Thesis , Orsay 1970.
A. Greenberger, A.P. Mills, A. Thompson, S. Berko, Phys. Lett . A32, 72 (1970).
P. Kirkegaard, M. Eldrup, Computer Phys. Comm . 3, 240 (1972); P. Kirkegaard, N.J. Pedersen, M. Eldrup, Risø Report M2740, Risø National Laboratory, Denmark 1989.
J. Kansy, Nucl. Instr.& Meth . A374, 235 (1996).
A. Shukla, M. Peter and L. Hofmann, Nucl. Instr. & Meth . A335, 310 (1993).
T. Suzuki, N. Oshima, E. Hamada, T. Ogawa, M. Murakami, Y. Ito, Material Sci. Forum 255-257, 308 (1997).
W.F. Magalhães, J.C. Abbé and G. Duplâtre, Struct. Chem . 2, 399 (1991).
T. Goworek, C. Rybka, Acta Phys. Polon . A50, 121 (1976).
T. Goworek, C. Rybka, J. Wawryszczuk, R. Wasiewicz, Chem. Phys. Lett. 106, 482 (1984).
T. Goworek, C. Rybka, J. Radioanal. Nucl. Chem. 242, 225 (1999).
T. Goworek, T. Suzuki, E. Hamada, K. Kondo, Y. Ito, Chem. Phys . 255, 347 (2000).
T. Goworek, J. Wawryszczuk, R. Zaleski, Chem. Phys. Lett . 387, 433 (2004).
A. Craievich, J. Doucet, I. Denicolò, Phys. Rev . B32, 4164 (1985).
T. Goworek, R. Zaleski, J. Wawryszczuk, Chem. Phys . 295, 243
(2003).
T. Asano, J. Phys. Soc. Jpn 54, 1403 (1985).
T. Goworek, M. Pietrow, R. Zaleski, B. Zgardzi Ĕ ska, Chem. Phys . 355, 123 (2009); also T. Goworek, B. Zgardzi Ĕ ska, M. Pietrow, J. Wawryszczuk, Material Sci. Forum 733 , 67 (2013).
B. Zaslow, M.E. Zandler, Am. J. Phys . 35 , 118 (1967)
G. Bastard, E. E. Mendez, L.L. Cheng, L. Esaki, Phys. Rev. B26 , 1974 (1982).
J. Bruce, J.N. Sherwood, N.J. Pedersen, M. Eldrup, in: „ Positron Annihilation ”, Eds. P.C. Jain, R.M. Singru, K.P. Gopinathan, World Sci. Publ. Co. Singapore, 1985, p.181.
G. Dlubek, J. Pionteck, Y. Yu, S. Thränert, E. Badawi, R. Krause-Rehberg, Macromol. Chem. Phys . 209 , 1920 (2008).
S. Claes, P. Vanderzande, S. Mullens, M.K. Van Bael, F.H. J. Maurer, Macromolecules 44, 2766 (2011).
K. Ito, Y. Kobayashi, A. Nanasawa, Appl. Phys. Lett . 82, 654 (2003).
H. Borek, W. Osoba, Polymer 42, 2901 (2001).
Y. Ito, Material Sci. Forum 175-178, 308 (1997).
C. Dauwe, Physicalia Mag . 12, 211 (1990).
G. Consolati, I. Genco, M. Pegoraro, L. Zanderighi, J. Polym. Sci. Pt.B 34 , 357 (1996).
P. Kindl, G. Reiter, phys. stat. sol. (a) 104, 707 (1987) Y. Ito, Polymer 37, 283 (1996).
T. Suzuki, Y. Oki, M. Numajiri, T. Miura. K. Kondo, N. Oshima, Y. Ito, Polymer, 37 , 283 (1996).
A. Uedono, T. Kawano, S. Tanigawa, M. Ban, M. Kyoto, T. Uozumi, J. Polym. Sci Part B 34, 2145 (1996).
T. Suzuki, T. Goworek, K. Kondo, E. Hamada and Y. Ito, J. Nucl. Radiochem. Sci. 1 , Supplement, 190 (1999); in Japanese.
T. Goworek, R. Zaleski, J. Wawryszczuk, Chem. Phys . 295, 243 (2003).
C.L. Wang, T. Hirade, F.H.J. Maurer, M. Eldrup, N.J. Pedersen, J. Chem. Phys. 108, 4654 (1998).
T. Hirade, F.H.J. Maurer, M. Eldrup, Radiat. Phys. Chem. 58, 465 (2000).
T. Hirade, C.L. Wang, F.H.J. Maurer, M. Eldrup, N.J. Pedersen, Abstract book for The 36th Annual Meeting on Radioisotopes in the Physical Science and Industries , Tokyo, 1998, p.89.
Y. Ito, T. Hirade, E. Hamada, T. Suzuki, Y. Ito, Acta Phys. Polon . A95, 533 (1999).
N. Djourelov, T. Goworek, K. Kondo, T. Suzuki, R. Zaleski, Phys. Lett. A 323, 165 (2004).
B. Zgardzinska, T. Goworek, Acta Phys. Polon . A119, 328 (2011).
V.P. Shantarovich, R.S. Yu, Ya. Kino, Ya. Hama, V.W. Gustov, High Energy Chem . 45, 1 (2011); in Russian.
F. Nahid, J.D. Zhang, T.F. Yu, C.C. Ling, S. Fung, D.C. Beling, Radiat. Phys. Chem . 60, 529 (2011).
M. Pietrow, J.Wawryszczuk, Material Sci. Forum 666, 89 (2011).
B. Zgardzi Ĕ ska, T. Hirade, T. Goworek, Chem. Phys. Lett . 446, 309 (2007).
M. Welander, F.H.J. Maurer, Material Sci. Forum 105-110 , 1811 (1992).
R.A. Naslud, Ph.L. Jones, A. Crowson, Material Sci. Forum 175- 178 , 739 (1995).
G. Dlubek, D. Bamford, O. Henschke, J. Knorr, M.A. Alam, M. Arnold, Th. Lüpke, Polymer, 42 , 5381 (2001).
B. Zgardzi Ĕ ska, T. Goworek, Chem. Phys. Lett . 547, 35 (2012).
V.P. Shantarovich, J. Radioanal. Nucl. Chem . 210, 357 (1996).
T. Goworek, K. Ciesielski, B. Jasi Ĕ ska, J. Wawryszczuk, Chem. Phys. Lett. 272, 91 (1997); Mater. Sci. Forum 255-257, 296 (1997).
T. Goworek, K. Ciesielski, B. Jasi Ĕ ska, J. Wawryszczuk, Chem. Phys . 230, 305 (1998).
A. Galarneau, D. Despantier, R. Dutartre, F. Di Renzo, Microporous Mesoporous Mater. 27 , 297 (1999).
R. Zaleski, J. Goworek, A. Borówka, Stud. Surf. Sci. Catal . 160, 471 (2006).
J. Wawryszczuk, J. Goworek, R. Zaleski, T. Goworek, Langmuir 19, 2599 (2003).
Y. Itoh, H. Murakami, A. Kinoshita, Appl. Phys. Lett . 63, 2798 (1993).
V.P. Shantarovich, I.B. Kevdina, Yu.A. Novikov, V.K. Jain, A. Gupta, Fiz. Tv. Tela 38, 2686 (1996). S. Dannefaer, D. Kerr, D. Craigen, T. Bretagnon, T. Taliercio, A. Foucaran, J. Appl. Phys . 79, 9110 (1996).