References: |
[ABDF11] G. Akemann, J. Baik, and P. Di Francesco, editors. The Oxford Handbook of Random Matrix Theory. Oxford Handbooks in Mathematics. Oxford University Press, 2011.
[AHV72] P. W. Anderson, B. I. Halperin, and C. M. Varma. Anomalous low-temperature thermal properties of glasses and spin glasses. Philosophical Magazine, 25(1):1, 1972.
[AM76] N. W. Ashcroft and D. N. Mermin. Solid state physics. Thomson Learning, 1976.
[CKR+ 10] A. Chaudhuri, A. Kundu, D. Roy, A. Dhar, J. L. Lebowitz, and H. Spohn. Heat transport and phonon localization in mass-disordered harmonic crystals. Physical Review B, 81(6):064301, 2010.
[FA86] J. J. Freeman and A. C. Anderson. Thermal conductivity of amorphous solids. Physical Review B, 34(8):5684, 1986.
[HRK+ 12] M. Hassaine, M. A. Ramos, A. I. Krivchikov, I. V. Sharapova, O. A. Korolyuk, and R. J. Jim ́nez-Riob ́o. Low-temperature thermal and elastoacoustic properties of butanol glasses: Study of position isomerism effects
around the boson peak. Physical Review B, 85(10):104206, 2012.
[HW70] J. Harrington and C. Walker. Phonon Scattering by Point Defects in CaF2, SrF2, and BaF2. Physical Review B, 1(2):882, 1970.
[JM73] W. Jones and N. H. March. Theoretical solid state physics, volume 1 and 2. Wiley-Interscience New York, 1973.
[JSS83] S. John, H. Sompolinsky, and M. Stephen. Localization in a disordered elastic medium near two dimensions. Physical Review B, 27(9):5592, 1983.
[LSZ06] T. Lück, H. J. Sommers, and M. R. Zirnbauer. Energy correlations for a random matrix model of disordered bosons. Journal of Mathematical Physics, 47:103304, 2006. arXiv:cond-mat/0607243.
[LSZ07] P. Littelmann, H. -J Sommers, and M. R Zirnbauer. Superbosonization of invariant random matrix ensembles. Commun. Math. Phys. 283 (2008) 343. arXiv:0707.2929.
[Lü09] T. Lück. Random Matrix Models for Disordered Bosons. PhD thesis, Mathematisch-Naturwissenschaftliche Fakultät der Universit ̈t zu Köln 2009.
[LV13] A. J. Leggett and D. C. Vural. ”Tunneling two-level systems” model of the low-temperature properties of glasses: are ”smoking-gun” tests possible? The journal of physical chemistry. B, 117(42):12966–71, 2013. arXiv:1310.3387.
[LW03] V. Lubchenko and P. G. Wolynes. The origin of the boson peak and thermal conductivity plateau in low-temperature glasses. Proceedings of the National Academy of Sciences of the United States of America, 100(4):1515, 2003. arXiv:cond-mat/0206194.
[Par94] D. Parshin. Interactions of soft atomic potentials and universality of low-temperature properties of glasses. Physical Review B, 49(14):9400, 1994.
[Phi72] W. A. Phillips. Tunneling states in amorphous solids. Journal of Low Temperature Physics, 7(3-4):351, 1972.
[Phi87] W. A. Phillips. Two-level states in glasses. Reports on Progress in Physics, 50(12):1657, 1987.
[PLT02] R. O. Pohl, X. Liu, and E. Thompson. Low-temperature thermal conductivity and acoustic attenuation in amorphous solids. Reviews of Modern Physics, 74(4):991, 2002.
[Sch14] S. E. Schmittner. An adaptive high precision solver for complex non-linear equations. github:Echsecutor/rootSolver, 2014.
[Sov67] P. Soven. Coherent-Potential Model of substitutional Disordered Alloys. Physical Review, 156(3):809, 1967.
[SS09] M. Schechter and P. C. E. Stamp. Low temperature universality in disordered solids. Physical Review B 88, 174202, 2013
[Ste73] R. B. Stephens. Low-temperature specific heat and thermal conductivity of noncrystalline dielectric solids. Physical Review B, 8:2896, 1973.
[Ste76] R. B. Stephens. Intrinsic low-temperature thermal properties of glasses. Physical Review B, 13(2):852, 1976.
[SW80] L. Sch ̈fer and F. Wegner. Disordered system with n orbitals per site: Lagrange formulation, hyperbolic symmetry, and goldstone modes. Zeitschrift für Physik B Condensed Matter, 38(2):113, 1980.
[SZ10] S. E. Schmittner and M. R. Zirnbauer. Coherent potential approximation for disordered bosons. arXiv:1012.5283, 2010.
[tH74] G. ’t Hooft. A planar diagram theory for strong interactions. Nuclear Physics B, 72(3):461, 1974.
[TRV02] C. Tal ́n, M. Ramos, and S. Vieira. Low-temperature specific heat of amorphous, orientational glass, and crystal phases of ethanol. Physical Review B, 66(1):012201, 2002.
[Tur04] M. Turlakov. Universal Sound Absorption in Low-Temperature Amorphous Solids. Physical Review Letters, 93(3), 2004. arXiv:cond-mat/0309097.
[Van53] L. Van Hove. The Occurrence of Singularities in the Elastic Frequency Distribution of a Crystal. Physical Review, 89(6):1189, 1953.
[Weg79] F. Wegner. Disordered system with n orbitals per site: n = ∞ limit. Physical Review B, 19(2):783, 1979.
[YM73] F. Yonezawa and K. Morigaki. Coherent Potential Approximation. Progress of Theoretical Physics Supplement, 53:1, 1973.
[Zir98] M. R. Zirnbauer. Riemannian symmetric superspaces and their origin in random matrix theory. Journal of Mathematics and Physics 37:4986, 1998. arXiv:math-ph/9808012
[ZP71] R. C. Zeller and R. O. Pohl. Thermal Conductivity and Specific Heat of Noncrystalline Solids. Physical Review B, 4(6):2029, 1971.
[Zuk94] J. A. Zuk. Introduction to the Supersymmetry Method for the Gaussian Random-Matrix Ensembles. arXiv:cond-mat/9412060, 1994. |