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Items: 1 to 20 of 85

1.

Radiation-induced defects in glasses: Origin of power-law dependence of concentration on dose.

Griscom DL, Gingerich ME, Friebele EJ.

Phys Rev Lett. 1993 Aug 16;71(7):1019-1022. No abstract available.

PMID:
10055428
2.

EPR investigation of the gamma radiation response of different types of glasses.

Gancheva V, Yordanov ND, Karakirova Y.

Spectrochim Acta A Mol Biomol Spectrosc. 2006 Mar 13;63(4):875-8. Epub 2006 Feb 21.

PMID:
16495124
3.

Relaxation dynamics in AgI-doped silver vanadate superionic glasses.

Bhattacharya S, Ghosh A.

J Chem Phys. 2005 Sep 22;123(12):124514.

PMID:
16392504
4.

Emergence of power laws in the pharmacokinetics of paclitaxel due to competing saturable processes.

Marsh RE, Tuszyński JA, Sawyer MB, Vos KJ.

J Pharm Pharm Sci. 2008;11(3):77-96.

5.

Correlation of ion dynamics and structure of superionic tellurite glasses.

Dutta D, Ghosh A.

J Chem Phys. 2008 Jan 28;128(4):044511. doi: 10.1063/1.2828495.

PMID:
18247973
6.

Impact of rare earth element clusters on the excited state lifetime evolution under irradiation in oxide glasses.

Pukhkaya V, Goldner P, Ferrier A, Ollier N.

Opt Express. 2015 Feb 9;23(3):3270-81. doi: 10.1364/OE.23.003270.

PMID:
25836185
7.

Scaling law for crystal nucleation time in glasses.

Mokshin AV, Galimzyanov BN.

J Chem Phys. 2015 Mar 14;142(10):104502. doi: 10.1063/1.4914172.

PMID:
25770546
8.

Efficacy of radiation safety glasses in interventional radiology.

van Rooijen BD, de Haan MW, Das M, Arnoldussen CW, de Graaf R, van Zwam WH, Backes WH, Jeukens CR.

Cardiovasc Intervent Radiol. 2014 Oct;37(5):1149-55. doi: 10.1007/s00270-013-0766-0. Epub 2013 Nov 2.

PMID:
24185812
9.

The effect of added O(2) on the transmittance and radiation resistance of radiation resistant glasses.

Li W, Lu M.

Opt Express. 2010 Dec 6;18(25):26307-12. doi: 10.1364/OE.18.026307.

PMID:
21164980
10.

Refractive-index changes caused by proton radiation in silicate optical glasses.

Gusarov AI, Doyle D, Hermanne A, Berghmans F, Fruit M, Ulbrich G, Blondel M.

Appl Opt. 2002 Feb 1;41(4):678-84.

PMID:
11993913
11.

Tunneling of large polarons in semiconducting zinc vanadate glasses.

Ghosh A, Bhattacharya S, Ghosh A.

J Phys Condens Matter. 2009 Apr 8;21(14):145802. doi: 10.1088/0953-8984/21/14/145802. Epub 2009 Mar 5.

PMID:
21825346
12.

Accidental gamma dose measurement using commercial glasses.

Narayan P, Vaijapurkar SG, Senwar KR, Kumar D, Bhatnagar PK.

Radiat Prot Dosimetry. 2008;130(3):319-24. doi: 10.1093/rpd/ncn051. Epub 2008 Feb 18.

PMID:
18285317
13.

Critical slowing down in spin glasses and other glasses: Fulcher versus power law.

Souletie J, Tholence JL.

Phys Rev B Condens Matter. 1985 Jul 1;32(1):516-519. No abstract available.

PMID:
9936703
14.

[Dosimetric studies using glass fibers].

Gripp S, Häsing FW, Büker H, Ammon J.

Strahlenther Onkol. 1994 Jan;170(1):48-53. German.

PMID:
8303578
15.
16.
17.

Fiber-optic dosimeter based on radiation-induced attenuation in P-doped fiber: suppression of post-irradiation fading by using two working wavelengths in visible range.

Tomashuk AL, Grekov MV, Vasiliev SA, Svetukhin VV.

Opt Express. 2014 Jul 14;22(14):16778-83. doi: 10.1364/OE.22.016778.

PMID:
25090496
18.

Dependence of defects induced by excimer laser on intrinsic structural defects in synthetic silica glasses.

Imai H, Arai K, Hosono H, Abe Y, Arai T, Imagawa H.

Phys Rev B Condens Matter. 1991 Sep 1;44(10):4812-4818. No abstract available.

PMID:
9998287
19.

Quantum path interference in the wavelength dependence of high-harmonic generation.

Schiessl K, Ishikawa KL, Persson E, Burgdörfer J.

Phys Rev Lett. 2007 Dec 21;99(25):253903. Epub 2007 Dec 21.

PMID:
18233522
20.

Composition-dependent photosensitivity in As-S glasses induced by bandgap light: structural origin by Raman scattering.

Yannopoulos SN, Kyriazis F, Chochliouros IP.

Opt Lett. 2011 Feb 15;36(4):534-6. doi: 10.1364/OL.36.000534.

PMID:
21326447

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