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Double-optical phase-transition in a three level Rydberg state in thermal Rubidium vapor

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arxiv 2504.10799 v1 pith:VSCI2E7P submitted 2025-04-15 physics.optics

Double-optical phase-transition in a three level Rydberg state in thermal Rubidium vapor

classification physics.optics
keywords phasetransitionsatomicbeamprobequantumrubidiumrydberg
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report on the observation of electromagnetically induced transparency (EIT) with intrinsic phase transitions in a three-level ladder system within rubidium atomic vapor. The observed abrupt transitions between low and high Rydberg occupancy states manifest in the probe beam transmission, depending on the principal quantum number, the Rabi frequency of the coupling field, atomic density, and probe beam detuning. Our study elucidates the underlying interaction mechanisms governing the EIT phase transition and enriches the existing experiments of multi-parameter regulation phase transitions. These findings establish a robust platform for investigating nonequilibrium phase transitions in atomic ensembles, bridging the gap between classical mean-field theories and microscopic quantum dynamics.

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