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January 24, 2026International Journal of Modern Physics B0 citations

Fast preparation of a three-dimensional entangled state via transitionless quantum driving

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ZZZ. M. ZhangJWJ. P. WangJWJ. P. Wang

Key Points

  • The main aim is to develop a scheme for rapidly preparing a three-dimensional entangled state of two atoms.
  • Proposed a preparation scheme involving two spatially separated atoms in cavities connected by fiber.
  • Utilized quantum zeno dynamics to implement shortcuts to adiabaticity.
  • Considered fluctuations and decoherence factors affecting system fidelity.
  • Applied numerical simulations to validate the approach.
  • Successfully achieved high-fidelity preparation of a three-dimensional entangled state.
  • Scheme showed insensitivity to fluctuations in system parameters.
  • Proposed extension for realizing n-dimensional entanglement between two atoms.

Abstract

A scheme for preparing a three-dimensional entangled state of two atoms is proposed. In the present scheme, two atoms are placed in two cavities that are spatially separated and connected by a fiber. With the help of quantum Zeno dynamics, the shortcuts to adiabaticity can be constructed through transitionless quantum driving to fast achieve the preparation of a three-dimensional entangled state. During this process, we consider the influence of fluctuations about system parameters and various decoherence factors on the fidelity. Numerical simulation results demonstrate that this scheme can not only realize the preparation of a three-dimensional entangled state with a high fidelity, but is also insensitive to parameter fluctuations. Moreover, our scheme can be extended to realize the N-dimensional entanglement of two atoms.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6974616cbb9d90c67120b54dhttps://doi.org/10.1142/s0217979226500529
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