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A time-dependent two interacting spin-qutrit model is analysed and solved. The two interacting qutrits are subjected to a longitudinal field linearly varying over time as in the Landau-Majorana-St\"uckelberg-Zener (LMSZ) scenario. Although…

量子物理 · 物理学 2019-06-11 R. Grimaudo , N. V. Vitanov , A. Messina

We study the dynamics of a three-level system (ThLS) sinusoidally driven in both longitudinal and transverse directions and in the presence of a uniaxial anisotropy $D$ entering the generic Hamiltonian through the zero-energy splitting term…

介观与纳米尺度物理 · 物理学 2016-09-06 M. B. Kenmoe , L. C. Fai

Enhanced room-temperature electromechanical coupling in the lead-free ferroelectric system $(1-x)$BaZr$_{0.2}$Ti$_{0.8}$O$_{3}$ - $x$Ba$_{0.7}$Ca$_{0.3}$TiO$_{3}$ (abbreviated as BZCT) at $x=0.5$ is attributed to the existence of a…

材料科学 · 物理学 2021-01-11 Soumya Bandyopadhyay , Tushar Jogi , Ranjith Ramadurai , Saswata Bhattacharya

We explore the asymmetric sequential Landau-Zener (LZ) dynamics in an ensemble of interacting Bose condensed two-level atoms coupled with a cavity field. Assuming the couplings between all atoms and the cavity field are identical, the…

量子气体 · 物理学 2016-08-17 Jiahao Huang , Pu Gong , Xizhou Qin , Honghua Zhong , Chaohong Lee

We study entanglement degradation when noise on one share of an entangled pair is described by the dissipative Landau-Zener model. We show that spin-coupling direction to the environment significantly affects entanglement dynamics. In…

量子物理 · 物理学 2025-10-29 Melika Babakan , Arman Kashef , Laleh Memarzadeh

We study Landau-Zener transitions in a qubit coupled to a bath at zero temperature. A general formula is derived that is applicable to models with a non-degenerate ground state. We calculate exact transition probabilities for a qubit…

介观与纳米尺度物理 · 物理学 2009-11-13 Keiji Saito , Martijn Wubs , Sigmund Kohler , Yosuke Kayanuma , Peter Hanggi

We study Landau-Zener transitions in a dissipative environment by means of the quasiadiabatic propagator path-integral scheme. It allows to obtain numerically exact results for the full range of the involved parameters. We discover a…

统计力学 · 物理学 2012-05-08 P. Nalbach , M. Thorwart

Optomechanical systems couple light to the motion of nanomechanical objects. Intriguing new effects are observed in recent experiments that involve the dynamics of more than one optical mode. There, mechanical motion can stimulate strongly…

介观与纳米尺度物理 · 物理学 2018-11-21 Huaizhi Wu , Georg Heinrich , Florian Marquardt

We study Landau-Zener transitions in a dissipative environment by means of the numerically exact quasiadiabatic propagator path-integral. It allows to cover the full range of the involved parameters. We discover a nonmonotonic dependence of…

介观与纳米尺度物理 · 物理学 2011-07-19 Peter Nalbach , Michael Thorwart

We develop a general theory of Landau-Zener (LZ) tunneling in a two-level system with amplitude-dependent, sign-reversible nonlinear coupling, distinguishing it fundamentally from conventional on-site nonlinearity. Through a combination of…

量子物理 · 物理学 2026-03-03 Wen-Yuan Wang , Hong-Juan Meng

We investigate the influence of temperature and dissipation on the Landau-Zener transition probability in circuit QED. Dissipation is modelled by coupling the transmission line to a bath of harmonic oscillators. The reduced description for…

量子物理 · 物理学 2008-12-01 David Zueco , Peter Hänggi , Sigmund Kohler

The Landau-Zener model of a quantum mechanical two-level system driven with a linearly time dependent detuning has served over decades as a textbook paradigm of quantum dynamics. In their seminal work [L. D. Landau, Physik. Z. Sowjet. 2, 46…

量子气体 · 物理学 2011-01-13 Yu-Ao Chen , Sebastian D. Huber , Stefan Trotzky , Immanuel Bloch , Ehud Altman

We determine transition probabilities in two exactly solvable multistate Landau-Zener (LZ) models and discuss applications of our results to the theory of dynamic passage through a phase transition in the dissipationless quantum mechanical…

量子气体 · 物理学 2015-06-12 N. A. Sinitsyn

The Landau--Zener (LZ) model describes a two-level quantum system that undergoes an avoided crossing. In the adiabatic limit, the transition probability vanishes. An auxiliary control field $H_\text{CD}$ can be reverse-engineered so that…

量子物理 · 物理学 2026-01-16 Georgios Theologou , Mikkel F. Andersen , Sandro Wimberger

Advanced magnetic recording paradigms typically use large temperature changes to drive switching which is detrimental to device longevity, hence finding non-thermal routes is crucial for future applications. By employing atomistic…

We investigate the many-body Landau-Zener (LZ) process in a two-site Bose-Hubbard model driven by a time-periodic field. We find that the driving field may induce sideband transitions in addition to the main LZ transitions. These…

量子气体 · 物理学 2014-09-29 Honghua Zhong , Qiongtao Xie , Jiahao Huang , Xizhou Qin , Haiming Deng , Jun Xu , Chaohong Lee

When a static electrical field is applied to a two-dimensional (2D) Dirac material, Landau-Zener transition (LZT) and Bloch-Zener oscillations can occur. Employing alpha-T3 lattices as a paradigm for a broad class of 2D Dirac materials, we…

介观与纳米尺度物理 · 物理学 2024-08-23 Li-Li Ye , Ying-Cheng Lai

The Landau-Zener (LZ) transition is one of the most fundamental phenomena in quantum dynamics. It describes nonadiabatic transitions between quantum states near an avoided crossing that can occur in diverse physical systems. Here we report…

Electron-electron interactions in half-filled high Landau levels in two-dimensional electron gases in a strong perpendicular magnetic field can lead to states with anisotropic longitudinal resistance. This longitudinal resitance is…

强关联电子 · 物理学 2012-02-17 Peter M. Smith , Malcolm P. Kennett

Tunneling two level systems (TLS), present in dielectrics at low temperatures, have been recently studied for fundamental understanding and superconducting device development. According to a recent theory by Burin \textit{et al.}, the TLS…

介观与纳米尺度物理 · 物理学 2015-06-18 M. S. Khalil , S. Gladchenko , M. J. A. Stoutimore , F. C. Wellstood , A. L. Burin , K. D. Osborn