Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/8184
Title: NMR investigations of dynamical tunneling in spin systems
Authors: KRITHIKA, V. R.
SANTHANAM, M. S.
MAHESH, T. S.
Dept. of Physics
Keywords: Physics
2023-SEP-WEEK2
TOC-SEP-2023
2023
Issue Date: Sep-2023
Publisher: American Physical Society
Citation: Physical Review A, 108,()3), 032207.
Abstract: In the usual quantum tunneling, a low-energy quantum particle penetrates across a physical barrier of higher potential energy, by traversing a classically forbidden region, and finally escapes into another region. In an analogous scenario, a classical particle inside a closed regular region in the phase space is dynamically bound from escaping to other regions of the phase space. Here, the physical potential barrier is replaced by dynamical barriers which separate different regions of the phase space. However, in the quantum regime, the system can overcome such dynamical barriers and escape through them, giving rise to dynamical tunneling. In chaotic Hamiltonian systems, dynamical tunneling refers to quantum tunneling between states whose classical limits correspond to symmetry-related regular regions separated by a chaotic zone between which any classical transport is prohibited. Here, an experimental realization of dynamical tunneling in spin systems is reported using nuclear magnetic resonance (NMR) architecture. In particular, dynamical tunneling in quantum kicked tops of spin-1 and spin-3/2 systems using two- and three-qubit NMR registers is investigated. By extracting time-dependent expectation values of the angular momentum operator components, size-dependent tunneling behavior for various initial states is systematically investigated. Further, by monitoring the adverse effects of dephasing noise on the tunneling oscillations, we assert the importance of quantum coherence in enabling dynamical tunneling.
URI: https://doi.org/10.1103/PhysRevA.108.032207
http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/8184
ISSN: 2469-9926
2469-9934
Appears in Collections:JOURNAL ARTICLES

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