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11.
Marcin Skulimowski 《Foundations of Physics Letters》2006,19(2):127-141
Since the beginning of quantum mechanics there have been a lot of attempts to quantize time. In this paper we refer to the
little known concept of quantum time proposed by E.Kapuscik [Hadronic J. 8 (1985) 75]. We analyze some properties of systems with quantum time. Moreover we comment and discuss the idea of quantum
time. 相似文献
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Colson S Konczykowski M Gaifullin MB Matsuda Y Gierłowski P Li M Kes PH Van Der Beek CJ 《Physical review letters》2003,90(13):137002
Vortex thermal fluctuations in heavily underdoped Bi(2)Sr(2)CaCu(2)O(8+delta) (T(c)=69.4 K) are studied using Josephson plasma resonance. From the zero-field data, we obtain the c-axis penetration depth lambda(L,c)(0)=230+/-10 micrometer and the anisotropy ratio gamma(T). The low plasma frequency allows us to study phase correlations over the whole vortex solid state and to extract a wandering length r(w) of vortex pancakes. The temperature dependence of r(w) as well as its increase with dc magnetic field is explained by the renormalization of the vortex line tension by the fluctuations, suggesting that this softening is responsible for the dissociation of the vortices at the first order transition. 相似文献
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15.
Machnes S Cerrillo J Aspelmeyer M Wieczorek W Plenio MB Retzker A 《Physical review letters》2012,108(15):153601
A pulsed cooling scheme for optomechanical systems is presented that is capable of cooling at much faster rates, shorter overall cooling times, and for a wider set of experimental scenarios than is possible by conventional methods. The proposed scheme can be implemented for both strongly and weakly coupled optomechanical systems in both weakly and highly dissipative cavities. We study analytically its underlying working mechanism, which is based on interferometric control of optomechanical interactions, and we demonstrate its efficiency with pulse sequences that are obtained by using methods from optimal control. The short time in which our scheme approaches the optomechanical ground state allows for a significant relaxation of current experimental constraints. Finally, the framework presented here can be used to create a rich variety of optomechanical interactions and hence offers a novel, readily available toolbox for fast optomechanical quantum control. 相似文献
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18.
Marcin Sobczyk 《Journal of luminescence》2009,129(5):430-418
In an attempt to find a neodymium-vanadate system with long lifetime of 4F3/2 level and relatively strong 4F3/2→4I11/2 emission for laser applications, the optical properties of Nd3+ in a new KZnLa(VO4)2 host is reported. The crystalline samples were obtained at 900 °C in air. The samples were crystallized in monoclinic system and were isostructural with KZnLa(PO4)2. KZnLa0.99Nd0.01(VO4)2 strongly emits in the near infrared range with the maxima at 871.6 and 1057 nm upon excitation through the 4F5/2 level (808 nm) or by the charge transfer bands of VO43−. The lifetime of 4F3/2 level of Nd3+ ion is larger than that observed in other neodymium-vanadates systems. 相似文献
19.
Marcin Magdziarz 《Journal of statistical physics》2009,136(3):553-564
In the classical approach the price of an asset is described by the celebrated Black-Scholes model. In this paper we consider
a generalization of this model, which captures the subdiffusive characteristics of financial markets. We introduce a subdiffusive
geometric Brownian motion as a model of asset prices exhibiting subdiffusive dynamics. We find the corresponding fractional
Fokker-Planck equation governing the dynamics of the probability density function of the introduced process. We prove that
the considered model is arbitrage-free and incomplete. We find the corresponding subdiffusive Black-Scholes formula for the
fair prices of European options and show how these prices can be evaluated using Monte-Carlo methods. We compare the obtained
results with the classical ones. 相似文献
20.
Liesegang rings refract and reflect at the interface between the regions of the same gel but of different thickness. The incident and the refracted rings obey a refraction law analogous to the Snell's law of classical optics, with a reverse of the spacing coefficient being a counterpart of the refraction index. The wavelike behavior of the rings at the interface is explained by geometrical arguments derived from the Jablczynski's spacing principle, and is reproduced in numerical simulations based on a three-dimensional minimalistic version of the nucleation-growth model. 相似文献