Spectroscopy of Rubidium atoms in solid matrices of rare gases: experimental results and theoretical analysis
Caterina Braggio, Roberto Calabrese, Giovanni Carugno, Giuseppe, Fiscelli, Marco Guarise, Alen Khanbekyan, Antonio Noto, Roberto Passante,, Lucia Rizzuto, Giuseppe Ruoso, Luca Tomassetti

TL;DR
This paper combines experimental and theoretical methods to study Rubidium atoms in solid inert gas matrices, aiming to optimize spectroscopic conditions for detecting axions and exploring new physics beyond the Standard Model.
Contribution
It provides the first detailed comparison of theoretical linewidth estimates with experimental spectra of Rubidium in solid Argon and Neon matrices, informing axion detector design.
Findings
Spectral linewidths are influenced by alkali-matrix interactions.
Theoretical estimates align with experimental measurements.
Dilute Lithium in parahydrogen may be a promising detector medium.
Abstract
We present an experimental and theoretical investigation of the spectroscopy of dilute alkali atoms in a solid matrix of inert gases at cryogenic temperatures, specifically Rubidium atoms in a solid Argon or Neon matrix, and related aspects of the interaction energies between the alkali atoms and the atoms of the solid matrix. The system considered is relevant for matrix isolation spectroscopy, and it is at the basis of a recently proposed detector of cosmological axions, exploiting magnetic-type transitions between Zeeman sublevels of alkali atoms in a magnetic field, tuned to the axion mass, assumed in the meV range. Axions are one of the supposed constituents of the dark matter (DM) of the Universe. This kind of spectroscopy could be also relevant for the experimental search of new physics beyond the Standard Model, in particular the search of violations of time-reversal or…
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Taxonomy
TopicsScientific Research and Discoveries · Advanced Physical and Chemical Molecular Interactions · Atomic and Molecular Physics
