Photonic Quantum Computing
15 papers for year 2024 from Europe PMC
Showing 1-12 of 15
A cryogenic on-chip microwave pulse generator for large-scale superconducting quantum computing.
Bao Z, Li Y, Wang Z, Wang J, Yang J, Xiong H, Song Y, Wu Y, Zhang H, Duan L.
Anisotropic qubit-photon interactions inducing multiple antibunching-to-bunching transitions of photons.
Ye T, Wang C, Chen QH.
Coherent Driving of a Single Nitrogen Vacancy Center by a Resonant Magnetic Tunnel Junction.
Yan GQ, McLaughlin N, Yamamoto T, Li S, Nozaki T, Yuasa S, Du CR, Wang H.
Deterministic photon source of genuine three-qubit entanglement.
Meng Y, Chan ML, Nielsen RB, Appel MH, Liu Z, Wang Y, Bart N, Wieck AD, Ludwig A, Midolo L, Tiranov A, Sørensen AS, Lodahl P.
Experimental realization of on-chip few-photon control around exceptional points.
Song P, Ruan X, Ding H, Li S, Chen M, Huang R, Kuang LM, Zhao Q, Tsai JS, Jing H, Yang L, Nori F, Zheng D, Liu YX, Zhang J, Peng Z.
Investigating the Use of Multiple Representations in University Courses on Quantum Technologies
Rexigel E, Bley J, Arias A, Qerimi L, Küchemann S, Kuhn J, Widera A.
Metropolitan-scale heralded entanglement of solid-state qubits.
Stolk AJ, van der Enden KL, Slater MC, Te Raa-Derckx I, Botma P, van Rantwijk J, Biemond JJB, Hagen RAJ, Herfst RW, Koek WD, Meskers AJH, Vollmer R, van Zwet EJ, Markham M, Edmonds AM, Geus JF, Elsen F, Jungbluth B, Haefner C, Tresp C, Stuhler J, Ritter S, Hanson R.
Microwave signal processing using an analog quantum reservoir computer.
Senanian A, Prabhu S, Kremenetski V, Roy S, Cao Y, Kline J, Onodera T, Wright LG, Wu X, Fatemi V, McMahon PL.
Monitoring the Energy of a Cavity by Observing the Emission of a Repeatedly Excited Qubit.
Hutin H, Essig A, Assouly R, Rouchon P, Bienfait A, Huard B.
On Purported Physical Realizations of So-called Quantum Information Technologies
Li G.
Phonon engineering of atomic-scale defects in superconducting quantum circuits.
Chen M, Owens JC, Putterman H, Schäfer M, Painter O.
Resisting High-Energy Impact Events through Gap Engineering in Superconducting Qubit Arrays.
McEwen M, Miao KC, Atalaya J, Bilmes A, Crook A, Bovaird J, Kreikebaum JM, Zobrist N, Jeffrey E, Ying B, Bengtsson A, Chang HS, Dunsworth A, Kelly J, Zhang Y, Forati E, Acharya R, Iveland J, Liu W, Kim S, Burkett B, Megrant A, Chen Y, Neill C, Sank D, Devoret M, Opremcak A.