Balaz, Antun and Vidanovic, Ivana and Bogojevic, Aleksandar and Belic, Aleksandar and Pelster, Axel (2011) Fast Converging Path Integrals for Time-Dependent Potentials II: Generalization to Many-body Systems and Real-Time Formalism. Journal of Statistical Mechanics: Theory and Experiment (3). 03005. ISSN 1742-5468 (FP7- 261323)
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Abstract
Based on a previously developed recursive approach for calculating the short-time expansion of the propagator for systems with time-independent potentials and its time-dependent generalization for simple single-particle systems, in this paper we present a full extension of this formalism to a general quantum system with many degrees of freedom in a time-dependent potential. Furthermore, we also present a recursive approach for the velocity-independent part of the effective potential, which is necessary for calculating diagonal amplitudes and partition functions, as well as an extension from the imaginary-time formalism to the real-time one, which enables to study the dynamical properties of quantum systems. The recursive approach developed here allows an analytic derivation of the short-time expansion to orders that have not been accessible before, using the implemented SPEEDUP symbolic calculation code. The analytically derived results are extensively numerically verified by treating several models in both imaginary and real time.
Keywords
Low-dimensional systems; Time-dependent potential; Many-body effective action; Real timeFunders
Ministry of Science and Technological Development of the Republic of SerbiaGerman Academic Exchange Service / DAAD
EU
Projects
ON171017PI-BEC and NAD-BEC
EGI-InSPIRE, HP-SEE and PRACE-1IP and AEGIS e-Infrastructure
Item Type: | Article |
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FP7 Grant Agreement Number: | 261323 |
FrameWork Programmes: | SP4-Capacities |
Scientific Areas: | Research Infrastructures |
Contact Email Address: | antun@ipb.ac.rs |
Last Modified: | 06 Aug 2012 10:52 |
Access rights: | Open access |
URI: | http://eprints.kobson.nb.rs/id/eprint/26 |
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