Two Doppler-free multiphoton schemes achieve microsecond coherent control of the 88Sr 1S0–3P0 clock transition on 3e6 free-space thermal atoms, suppressing Doppler dephasing 1000-fold versus single-photon excitation.
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Direct spectroscopic measurement of Casimir-Polder force-induced kHz shifts on strontium atoms in the intermediate regime agrees with QED but differs from short- and long-range approximations.
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Microsecond-Scale Coherent Control of a Forbidden Clock Transition with Doppler-Free Multiphoton Excitations
Two Doppler-free multiphoton schemes achieve microsecond coherent control of the 88Sr 1S0–3P0 clock transition on 3e6 free-space thermal atoms, suppressing Doppler dephasing 1000-fold versus single-photon excitation.
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Spectroscopic measurement of the Casimir-Polder force in the intermediate regime
Direct spectroscopic measurement of Casimir-Polder force-induced kHz shifts on strontium atoms in the intermediate regime agrees with QED but differs from short- and long-range approximations.