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September 26, 2007Physical Review Letters136 citationsOpen Access

Generalized Stern-Gerlach Effect for Chiral Molecules

YLYong LiCBChristoph BruderCSC. P. Sun

Key Points

  • This study investigates how an induced gauge potential can create a generalized Stern-Gerlach effect in chiral molecules.
  • Induced gauge potential examined in three-level chiral molecules.
  • Utilized three inhomogeneous light fields to create optical conditions.
  • Numerical simulations performed to characterize the resulting dynamics.
  • Observed pseudospin-dependent splitting effects in mixed left- and right-handed chiral molecules under optical fields.
  • Demonstrated that the induced gauge potential affects the center of mass dynamics of the molecule.

Abstract

The Stern-Gerlach effect is well known as spin-dependent splitting of a beam of atoms with magnetic moments by a magnetic-field gradient. Here, we show that an induced gauge potential may lead to a similar effect for chiral molecules. In the presence of three inhomogeneous light fields, the center of mass of a three-level chiral molecule is subject to an optically induced gauge potential, and the internal dynamics of the molecule can be described as an adiabatic evolution in the reduced pseudospin subspace of the two lowest energy levels. We demonstrate numerically that such an induced gauge potential can lead to observable pseudospin-dependent and chirality-dependent generalized Stern-Gerlach effects for mixed left- and right-handed chiral molecules under realistic conditions.

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Cite This Study

Li et al. (2007) studied this question.

synapsesocial.com/papers/6a1019aa92676d5461fd8a73https://doi.org/10.1103/physrevlett.99.130403
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