A closed-trajectory evolution of a quantum state generally imprints a phase that contains both dynamical and geometrical contributions. While dynamical phases depend on the reference system, geometric phase factors are uniquely defined by the properties of the outlined trajectory. Here we generate and measure geometric phases in a Bose-Einstein condensate of 87Rb using a combination of the dynamical quantum Zeno effect and measurementfree evolution. We show that the dynamical quantum Zeno effect can inhibit the formation of a geometric phasewithout altering the dynamical phase. This can be used to extract the geometric Aharonov-Anandan phase from any closed-trajectory evolution without requiring knowledge or control of the Hamiltonian.
Measuring geometric phases with a dynamical quantum Zeno effect in a Bose-Einstein condensate / Do, H. V.; Gessner, M.; Cataliotti, F. S.; Smerzi, A.. - In: PHYSICAL REVIEW RESEARCH. - ISSN 2643-1564. - STAMPA. - 1:(2019), pp. 033028/1-033028/7. [10.1103/PhysRevResearch.1.033028]
Measuring geometric phases with a dynamical quantum Zeno effect in a Bose-Einstein condensate
Do, H. V.;Cataliotti, F. S.;Smerzi, A.
2019
Abstract
A closed-trajectory evolution of a quantum state generally imprints a phase that contains both dynamical and geometrical contributions. While dynamical phases depend on the reference system, geometric phase factors are uniquely defined by the properties of the outlined trajectory. Here we generate and measure geometric phases in a Bose-Einstein condensate of 87Rb using a combination of the dynamical quantum Zeno effect and measurementfree evolution. We show that the dynamical quantum Zeno effect can inhibit the formation of a geometric phasewithout altering the dynamical phase. This can be used to extract the geometric Aharonov-Anandan phase from any closed-trajectory evolution without requiring knowledge or control of the Hamiltonian.File | Dimensione | Formato | |
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