Pseudo-Qutrit Formed by Two Interacting Identical Spins (s = 1/2) in a Variable External Magnetic Field

Author:

Belousov Yury1,Chernousov Igor2,Man’ko Vladimir3

Affiliation:

1. Terra Quantum AG, St. Gallerstrasse 16A, 9400 Rorschach, Switzerland

2. Moscow Institute of Physics and Technology, Institutskiy Per. 9, Moscow Distr., Dolgoprudny 141701, Russia

3. Lebedev Physical Institute, Leninskii Prospect 53, Moscow 119991, Russia

Abstract

An analytical solution is obtained for the problem of two interacting, identical but separated spin 1/2 particles in a time-dependent external magnetic field, in a general case. The solution involves isolating the pseudo-qutrit subsystem from a two-qubit system. It is shown that the quantum dynamics of a pseudo-qutrit system with a magnetic dipole–dipole interaction can be described clearly and accurately in an adiabatic representation, using a time-dependent basis set. The transition probabilities between the energy levels for an adiabatically varying magnetic field, which follows the Landau–Majorana–Stuckelberg–Zener (LMSZ) model within a short time interval, are illustrated in the appropriate graphs. It is shown that for close energy levels and entangled states, the transition probabilities are not small and strongly depend on the time. These results provide insight into the degree of entanglement of two spins (qubits) over time. Furthermore, the results are applicable to more complex systems with a time-dependent Hamiltonian.

Publisher

MDPI AG

Subject

General Physics and Astronomy

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