Hybrid integration of fiber pigtailed silicon nitride microcavities with atom-chips for cavity QED applications

Fiber coupled silicon nitride microcavities with Q > 3.6 times 10 6 and effective mode volume < 10(lambda/n) 3 at wavelengths resonant with alkali atom transitions are robustly integrated with magnetostatic atom-chips.

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Published in:2006 Conference on Lasers and Electro-Optics and 2006 Quantum Electronics and Laser Science Conference pp. 1 - 2
Main Authors: Barclay, P.E., Srinivasan, K., Borselli, M., Johnson, T.J., Painter, O., Lev, B., Mabuchi, H.
Format: Conference Proceeding
Language:English
Published: IEEE 01-05-2006
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Abstract Fiber coupled silicon nitride microcavities with Q > 3.6 times 10 6 and effective mode volume < 10(lambda/n) 3 at wavelengths resonant with alkali atom transitions are robustly integrated with magnetostatic atom-chips.
AbstractList Fiber coupled silicon nitride microcavities with Q > 3.6 times 10 6 and effective mode volume < 10(lambda/n) 3 at wavelengths resonant with alkali atom transitions are robustly integrated with magnetostatic atom-chips.
Author Borselli, M.
Mabuchi, H.
Srinivasan, K.
Johnson, T.J.
Barclay, P.E.
Painter, O.
Lev, B.
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– sequence: 7
  givenname: H.
  surname: Mabuchi
  fullname: Mabuchi, H.
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Snippet Fiber coupled silicon nitride microcavities with Q > 3.6 times 10 6 and effective mode volume < 10(lambda/n) 3 at wavelengths resonant with alkali atom...
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StartPage 1
SubjectTerms (230.5750) Resonators
(270.5580) Quantum electrodynamics
Atomic measurements
Couplings
Hafnium
Microcavities
Optical fiber devices
Optical fibers
Silicon
Title Hybrid integration of fiber pigtailed silicon nitride microcavities with atom-chips for cavity QED applications
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