paper

Probing Nonlocal Spatial Correlations in Quantum Gases with Ultra-long-range Rydberg Molecules

arXiv:1903.11526 · doi:10.1103/PhysRevA.100.011402

Abstract

We present photo-excitation of ultra-long-range Rydberg molecules as a probe of spatial correlations in quantum gases. Rydberg molecules can be created with well-defined internuclear spacing, set by the radius of the outer lobe of the Rydberg electron wavefunction . By varying the principal quantum number of the target Rydberg state, the molecular excitation rate can be used to map the pair-correlation function of the trapped gas . We demonstrate this with ultracold Sr gases and probe pair-separation length scales ranging from , which are on the order of the thermal de Broglie wavelength for temperatures around 1 K. We observe bunching for a single-component Bose gas of Sr and anti-bunching due to Pauli exclusion at short distances for a polarized Fermi gas of Sr, revealing the effects of quantum statistics.

6 pages, 5 figures