Trapped-Ion Quantum Computing
1,585 papers for year 2020
Trapped-Ion Quantum Computing Research Context
This Quantum Articles category organizes published quantum research papers so readers can browse focused work by topic, source, and year.
Showing 625-636 of 1,585
Highly nonclassical phonon emission statistics through two-phonon loss of van der Pol oscillator
Jiahua Li, Chunling Ding, Ying Wu
Highly photon loss tolerant quantum computing using hybrid qubits
S. Omkar, Y. S. Teo, Seung-Woo Lee, H. Jeong
Hilbert-Schmidt speed as an efficient tool in quantum metrology
Hossein Rangani Jahromi, Rosario Lo Franco
Hole spin qubits in Si FinFETs with fully tunable spin-orbit coupling and sweet spots for charge noise
Stefano Bosco, Bence Hetényi, Daniel Loss
Homogeneous open quantum walks on the line: criteria for site recurrence and absorption
T. S. Jacq, C. F. Lardizabal
How confused can an entanglement witness be to be still persuasive
Jan Roik, Karol Bartkiewicz, Antonín Černoch, Karel Lemr
How Dynamical Quantum Memories Forget
Lukasz Fidkowski, Jeongwan Haah, Matthew B. Hastings
How long does it take to implement a projective measurement?
Philipp Strasberg, Kavan Modi, Michalis Skotiniotis
How to design quantum-jump trajectories via distinct master equation representations
Dariusz Chruściński, Kimmo Luoma, Jyrki Piilo, Andrea Smirne
How to enhance quantum generative adversarial learning of noisy information
Paolo Braccia, Filippo Caruso, Leonardo Banchi
How will quantum computers provide an industrially relevant computational advantage in quantum chemistry?
V. E. Elfving, B. W. Broer, M. Webber, J. Gavartin, M. D. Halls, K. P. Lorton, A. Bochevarov
Hybrid convolutional neural network and PEPS wave functions for quantum many-particle states
Xiao Liang, Shao-Jun Dong, Lixin He