Bulletin of the American Physical Society
56th Annual Meeting of the APS Division of Atomic, Molecular and Optical Physics
Monday–Friday, June 16–20, 2025; Portland, Oregon
Session C04: Laser Cooling and Trapping I
2:00 PM–4:00 PM,
Tuesday, June 17, 2025
Oregon Convention Center
Room: Portland Ballroom 255
Chair: Travis Nicholson, Duke University
Abstract: C04.00009 : Two-Photon Cooling of Calcium Atoms
3:36 PM–3:48 PM
Presenter:
Claudia Politi
(ETH Zürich)
Authors:
Claudia Politi
(ETH Zürich)
Wojciech Adamczyk
(ETH Zürich)
Silvan Koch
(ETH Zürich)
Henry Passagem
(ETH Zürich)
Christoph Fischer
(ETH Zürich)
Pavel Filippov
(ETH Zürich)
Florence Berterottière
(ETH Zürich)
Justus Urbanetz
(ETH Zürich)
Daniel Kienzler
(ETH Zürich)
Jonathan P Home
(ETH Zurich)
high control and scalability of the system. In such systems, the long-lived metastable states can be used for motional ground state cooling, qubit readout and manipulation, as well as
providing access to single-photon Rydberg excitation and quantum erasure conversion. To trap individual atoms in optical tweezers, temperatures as low as tens of microkelvin are
desirable. The absence of hyperfine structure in alkaline-earth atoms precludes the use of standard sub-Doppler schemes developed for alkali atoms. In this work, we demonstrate
two-photon cooling of calcium atoms using a two-photon transition from the 1S0 ground state to the upper 4s5s 1S0 state via the 1P1 intermediate state. We achieve temperatures
as low as 260 μK in a magneto-optical trap (MOT), well below the Doppler limit (TD = 0.8 mK) of the 1P1 state. This scheme provides an alternative to the standard Doppler cooling applied to alkaline-earth atoms, based on a sequence of two magneto-optical traps, with the advantages of varying the effective linewidth of the 1P1 state, a higher transfer efficiency (close to 100%), and a more straightforward experimental implementation. Finally, we outline the progress towards optical trapping of ground and circular Rydberg states of calcium atoms in optical tweezers.
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