Abstract
Using a single calcium ion confined in a surface-electrode trap, we study the interaction of electric quadrupole transitions with a passively phase-stable optical standing wave field sourced by photonics integrated within the trap. We characterize the optical fields through spatial mapping of the Rabi frequencies of both carrier and motional sideband transitions as well as ac Stark shifts. Our measurements demonstrate the ability to engineer favorable combinations of sideband and carrier Rabi frequency as well as ac Stark shifts for specific tasks in quantum state control and metrology. Show more
Publication status
publishedExternal links
Journal / series
Physical Review LettersVolume
Pages / Article No.
Publisher
American Physical SocietyOrganisational unit
03892 - Home, Jonathan / Home, Jonathan
Funding
207334 - Ion-trap quantum computing using integrated optics (SNF)
801285 - Portable Ion Devices for Mobile-Oriented Next-generation semiconductor Technologies (EC)
185902 - QSIT - Quantum Science and Technology (SNF)
820495 - Advanced quantum computing with trapped ions (EC)
179909 - High-level control and spectroscopy of single trapped molecular ions (SNF)
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