162 citations · 288 across the 5 of their papers we have counts for
6 papers · 1 filter
Architecture-Dependent Execution Time of Shor's Algorithm
Rodney Van Meter, Kohei M. Itoh, Thaddeus D. Ladd
We show how the execution time of algorithms on quantum computers depends on the architecture of the quantum computer, the choice of algorithms (including subroutines such as arith…
Efficient decoupling and recoupling in solid state NMR for quantum computation
Fumiko Yamaguchi, Thaddeus D. Ladd, Cyrus P. Master +2
A scheme for decoupling and selectively recoupling large networks of dipolar-coupled spins is proposed. The scheme relies on a combination of broadband, decoupling pulse sequences…
Coherence Time of a Solid-State Nuclear Qubit
T. D. Ladd, D. Maryenko, E. Abe +2
We report NMR experiments using high-power, RF decoupling techniques to show that a 29-Si nuclear spin qubit in a solid silicon crystal at room temperature can preserve quantum pha…
Optical Detection of a Single Nuclear Spin
K-M. C. Fu, T. D. Ladd, C. Santori +1
We propose a method to optically detect the spin state of a 31-P nucleus embedded in a 28-Si matrix. The nuclear-electron hyperfine splitting of the 31-P neutral-donor ground state…
An all silicon quantum computer
T. D. Ladd, J. R. Goldman, F. Yamaguchi +3
A solid-state implementation of a quantum computer composed entirely of silicon is proposed. Qubits are Si-29 nuclear spins arranged as chains in a Si-28 (spin-0) matrix with Larmo…
Quantum computation in a one-dimensional crystal lattice with NMR force microscopy
T. D. Ladd, J. R. Goldman, A. Dana +2
A proposal for a scalable, solid-state implementation of a quantum computer is presented. Qubits are fluorine nuclear spins in a solid crystal of fluorapatite [Ca_5 F(PO_4)_3] with…