8 citations · 15 across the 3 of their papers we have counts for
6 papers
Many-particle localization by constructed disorder: enabling quantum computing with perpetually coupled qubits
M. I. Dykman, F. M. Izrailev, L. F. Santos +1
We demonstrate that, in a many-particle system, particles can be strongly confined to their sites. The localization is obtained by constructing a sequence of on-site energies that…
Acceptor-based silicon quantum computing
B. Golding, M. I. Dykman
A solid-state quantum computer with dipolar coupling between qubits is proposed. The qubits are formed by the low-lying states of an isolated acceptor in silicon. The system has th…
Low-frequency conductivity of a non-degenerate 2D electron liquid in strong magnetic fields
M. I. Dykman, Leonid P. Pryadko
We study the conductivity of a nondegenerate 2D electron liquid in a quantizing magnetic field for frequencies well below the cyclotron frequency. The conductivity is formed by ele…
A quantum computer based on electrons floating on liquid helium
M. I. Dykman, P. M. Platzman
Electrons on a helium surface form a quasi two-dimensional system which displays the highest mobility reached in condensed matter physics. We propose to use this system as a set of…
Controlling activated processes
M. I. Dykman, Brage Golding
The rates of activated processes, such as escape from a metastable state and nucleation, are exponentially sensitive to an externally applied field. We describe how this applies to…
Single electron magneto-conductivity of a nondegenerate 2D electron system in a quantizing magnetic field
Frank Kuehnel, Leonid P. Pryadko, M. I. Dykman
We study transport properties of a non-degenerate two-dimensional system of non-interacting electrons in the presence of a quantizing magnetic field and a short-range disorder pote…