activity
20182020
collaborators

6 papers

quant-ph2020

Multifunctional on-chip storage at telecommunication wavelength for quantum networks

Ioana Craiciu, Mi Lei, Jake Rochman +2

Quantum networks will enable a variety of applications, from secure communication and precision measurements to distributed quantum computing. Storing photonic qubits and controlli…

quant-ph2019

On-chip coherent microwave-to-optical transduction mediated by ytterbium in YVO

John G. Bartholomew, Jake Rochman, Tian Xie +5

Optical networks that distribute entanglement among quantum technologies will form a powerful backbone for quantum science but are yet to interface with leading quantum hardware su…

quant-ph2019

Coherent control and single-shot readout of a rare-earth ion embedded in a nanophotonic cavity

Jonathan M. Kindem, Andrei Ruskuc, John G. Bartholomew +3

Quantum networks based on optically addressable spin qubits promise to enable secure communication, distributed quantum computing, and tests of fundamental physics. Scaling up quan…

quant-ph2019

Nanophotonic quantum storage at telecommunications wavelength

Ioana Craiciu, Mi Lei, Jake Rochman +6

Quantum memories for light are important components for future long distance quantum networks. We present on-chip quantum storage of telecommunications band light at the single pho…

quant-ph2018

Optically addressing single rare-earth ions in a nanophotonic cavity

Tian Zhong, Jonathan M. Kindem, John G. Bartholomew +8

We demonstrate optical probing of spectrally resolved single Nd rare-earth ions in yttrium orthovanadate. The ions are coupled to a photonic crystal resonator and show strong enhan…

quant-ph2018

Controlling rare-earth ions in a nanophotonic resonator using the ac Stark shift

John G. Bartholomew, Tian Zhong, Jonathan M. Kindem +5

On-chip nanophotonic cavities will advance quantum information science and measurement because they enable efficient interaction between photons and long-lived solid-state spins, s…