David Landgren

Demonstration of integrated microscale optics in surface-electrode ion traps

J. True Merrill, Curtis Volin [2], David Landgren [2], Jason M. Amini, Kenneth Wright [2], S. Charles Doret, C. -S. Pai, Harley Hayden [2], Tyler Killian [2], Daniel Faircloth [2], Kenneth R. Brown, Alexa W. Harter, Richart E. Slusher

Abstract

In ion trap quantum information processing, efficient fluorescence collection is critical for fast, high-fidelity qubit detection and ion-photon entanglement. The expected size of future many-ion processors require scalable light collection systems. We report on the development and testing of a microfabricated surface-electrode ion trap with an integrated high numerical aperture (NA) micromirror for fluorescence collection. When coupled to a low NA lens, the optical system is inherently scalable to large arrays of mirrors in a single device. We demonstrate stable trapping and transport of 40Ca+ ions over a 0.63 NA micromirror and observe a factor of 1.9 enhancement in photon collection compared to the planar region of the trap.