О возможности регистрации элементарных частиц темной материи - page 20

[16] Mueller G., Sikivie P., Tanner D.B., Van Bibber K.A., eds. Resonantly-
enhanced axion-photon regeneration.
Proc. Int. Conf.
“Axions 2010”,
American Institute of Physics, Florida, USA, 2010, pp. 150–155. Available
at:
tanner/PDFS/Mueller10aps-reapr.pdf (accessed
17.02.2014).
[17] Asztalos S.J., Carosi G., Hagmann C., Kinion D., Van Bibber K., Hotz M.,
Rosenberg L.J., Rybka G., Hoskins J., Hwang J., Sikivie P., Tanner D.B., Bradley R.,
Clarke J. SQUID-based microwave cavity search for dark-matter axions.
Phys. Rev.
Lett.
, 2010, vol. 104, iss. 4, p. 041301. DOI: 10.1103/PhysRevLett.104.041301
[18] Friedland A., Giannotti M., Wise M. Constraining the axion-photon coupling with
massive stars.
Phys. Rev. Lett.
, 2013, vol. 110, iss. 6, pp. 061101(1)–061101(5). DOI:
10.1103/PhysRevLett.110.061101
[19] Bellini G., Benziger J., Bick D. Search for solar axions produced in p(d, 3He).
A reaction with Borexino detector.
Phys. Rev. D
, 2012, vol. 85, pp. 092003(1)–
092003(11). DOI: 10.1103/PhysRevD.85.092003
[20] Hudson H.S., Acton L.W., DeLuca E., Hannah I.G., . Reardon K., Van Bibber K. X-
Ray searches for solar axions.
Proc. 4th Hinode Sci. Meeting “Unsolved Problems and
Recent Insights.” ASP Conference Series
. Mondello, Palermo, Italy, 2012, vol. 455,
pp. 25–34.
[21] Gorelik V.S. Linear and nonlinear optical phenomena in nanostructured photonic
crystals, filled by dielectrics or metals.
Eur. Phys. J. Appl. Phys.
, 2010, vol. 49, no. 3,
pp. 3307(1)–3307 (9). DOI:
[22] Gorelik V.S., Sushchinskii M.M. Raman scattering of light in crystals.
Usp. Fiz. Nauk
[Sov. Phys.-Usp.], 1969, vol. 98, p. 237–298 (in Russ.).
[23] Gorelik V.S., Izmailov G.N. Stimulated photon conversion into pseudo-scalar bosons.
Bull. Lebedev Phys . Inst.
, 2011, vol. 38, no. 6, pp. 177–183.
[24] Yablonovitch E. Inhibited spontaneous emission in solid-state physics and
electronics.
Phys. Rev. Lett.
, 1987, vol. 58, no. 20, pp. 2059–2062. DOI:
dx.doi.org/10.1103/PhysRevLett.58.2059
[25] John S. Strong localization of photons in certain disordered dielectric superlattices.
Phys. Rev. Lett.
, 1987, vol. 58, pp. 2486–2489.
[26] Dowling J.P., Bowden C.M. Atomic emission rates in inhomogeneous media with
applications to photonic band structures.
Phys. Rev. A
, 1992, vol. 46, no. 1, pp. 612–
622.
[27] John S., Quang T. Localization of superradiance near a photonic band gap.
Phys.
Rev. Lett.
, 1995, vol. 74, no. 17, pp. 3419–3422.
[28] Astratov V.N.,
Bogomolov V.N.,
Kaplyanskii A.A.,
Prokofiev A.V.,
Samoilovich L.A., Samoilovich S.M., Vlasov Yu.A. Optical spectroscopy of
opal matrices with CdS embedded in its pores: Quantum confinement and photonic
band gap effects.
Nuovo Cimento D
, 1995, vol. 17, no. 11–12, pp. 1349–1354.
[29] Bogomolov V.N., Gaponenko S.V., Kapitonov A.M., Prokofiev A.V., Ponyavina A.N.,
Silvanovich N.I., Samoilovich S.M. Photonic band gap in the visible range in a three-
dimensional solid state lattice.
Appl. Phys. A
, 1996, vol. 63, no. 6, pp. 613–616.
[30] Purcell E.M. Spontaneous emission probabilities at radio frequencies.
Phys. Rev.
,
1946, vol. 69, p. 681.
[31] Gorelik V.S. Optics of globular photonic crystals.
Kvantovaya Elektron.
[Quantum
Electronics], 2007, vol. 37(5), pp. 409–432 (in Russ.).
[32] Gorelik V.S. Optics of globular photonic crystals.
Laser Physics
, 2008, vol. 18 (12),
pp. 1479–1500.
[33] Voshchinskii Yu.A., Gorelik V.S. Dispersion law in photonic crystals in sinusoidal
and quasi-relativistic approximations.
Inorganic Materials
, 2011, vol. 47, no. 2,
pp. 148–151.
[34] Josephson B.D. Possible new effects in superconductive tunneling.
Phys. Lett.
, 1962,
vol. 1, pp. 251–253.
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