A magneto-optical trap is used to locate repumping transitions in SrOH, increasing trapped molecule number by 4.5 times and measuring the energy difference between two vibrational states relevant to ultralight dark matter searches.
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Derives a generalized Schawlow-Townes linewidth limit for feedback oscillators that can be saturated by bad-cavity devices or surpassed via quantum engineering such as atomic spin squeezing.
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High-sensitivity molecular spectroscopy of SrOH using magneto-optical trapping
A magneto-optical trap is used to locate repumping transitions in SrOH, increasing trapped molecule number by 4.5 times and measuring the energy difference between two vibrational states relevant to ultralight dark matter searches.
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A Generalized Schawlow-Townes Limit
Derives a generalized Schawlow-Townes linewidth limit for feedback oscillators that can be saturated by bad-cavity devices or surpassed via quantum engineering such as atomic spin squeezing.