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 H00: Poster Session II (4:00PM - 6:00PM PT)
4:00 PM,
Wednesday, June 18, 2025
Oregon Convention Center
Room: Exhibit Hall E
Abstract: H00.00052 : Full integration of alkali vapors and photonic circuits for nonlinear and quantum optics*
Presenter:
Khoi T Hoang
(Joint Quantum Institute, University of Maryland, College Park)
Authors:
Khoi T Hoang
(Joint Quantum Institute, University of Maryland, College Park)
Rahul Shrestha
(Joint Quantum Institute, University of Maryland, College Park)
Peter S Riley
(University of Colorado Boulder; National Institute of Standards and Technology)
Daron Westly
(National Institute of Standards and Technology)
Roy T Zektzer
(Joint Quantum Institute, University of Maryland, College Park; National Institute of Standards and Technology)
Paul David Lett
(Joint Quantum Institute, University of Maryland, College Park)
Matthew T Hummon
(National Institute of Standards and Technology Boulder)
Kartik A Srinivasan
(Joint Quantum Institute, University of Maryland, College Park; National Institute of Standards and Technology)
However, a key challenge in this system is the high reactivity of Rb, which degrades photonic quality over time. This issue is particularly critical when investigating serpentine waveguides, designed for extended interaction lengths, and slotted microring resonators, which confine optical fields in their air gaps. To mitigate these effects, we implement several strategies. Elevating the base temperature reduces Rb adhesion, high-power laser atomic desorption via off-resonant azimuthal modes in microring resonators prevents buildup, and atomic layer deposition (ALD) of alumina protects photonic surfaces from corrosion. Looking forward, we aim to refine Rb vapor control to the beam source level, enabling precise manipulation of atomic interactions with nanophotonic structures. This work establishes a robust atomic-photonic platform for nonlinear optics and cavity QED explorations and applications.
*Funding Acknowledgement: We acknowledge partial funding support from the DARPA SAVaNT program (under ARO W911NF2120106) and the NIST-on-a-chip program.
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