related words |
engine |
readout |
architecture |
impurities |
gershenfeld |
refocusing |
nuclei |
unwanted |
jones |
selectively |
scalable |
vandersypen |
tsifrinovich |
berman |
liquid |
gating |
dipolar |
couplings |
pseudopure |
initialization |
|
related documents |
Efficient multiple-quantum transition processes in an n-qubit spin system [0411046v2] |
Selective interactions in trapped ions: state reconstruction and quantum
logic [0310007v1] |
"Spectral Implementation" for creating a labeled pseudo-pure state and
the Bernstein-Vazirani's algorithm in a four-qubit nuclear magnetic resonance
quantum processor [0202008v2] |
Quantum Information processing by NMR: Preparation of pseudopure states
and implementation of unitary operations in a single-qutrit system [0307240v1] |
Spectral implementation of some quantum algorithms by one- and
two-dimensional nuclear magnetic resonance [0503101v1] |
NMR Quantum Computation: a Critical Evaluation [0002085v1] |
Selective pulse implementation of two-qubit gates for spin-3/2 based
fullerene quantum information processing [0311178v2] |
Quantum cellular automata quantum computing with endohedral fullerenes [0210202v1] |
A relaxationless demonstration of the Quantum Zeno Paradox on an
individual atom [0406027v1] |
Quantum Gate Design Metric [0605071v1] |
Quantum computation in a one-dimensional crystal lattice with NMR force
microscopy [0009122v4] |
Decoherence and the theory of continuous quantum measurements [9812017v2] |
Perfect Cluster States from Imperfect Global Entanglement [0605244v3] |
Measurement and Physical Content of Quantum Information [0210190v1] |
Quantum Logic Gates and Nuclear Magnetic Resonance Pulse Sequences [9805070v1] |
Quantum Codes for Controlling Coherent Evolution [0004029v1] |
Selective truncations of an optical state using projection synthesis [0605146v1] |
Fault-tolerant quantum repeaters with minimal physical resources, and
implementations based on single photon emitters [0502112v1] |
Implementation of quantum logic operations and creation of entanglement
in a silicon-based quantum computer with constant interaction [0512174v1] |
Theoretical analysis of the implementation of a quantum phase gate with
neutral atoms on atom chips [0603138v1] |
|
related topics |
{spin, pulse, spins} |
{state, phys, rev} |
{measurement, state, measurements} |
{trap, ion, state} |
{level, atom, field} |
{states, state, optimal} |
{qubit, qubits, gate} |
{cavity, atom, atoms} |
{theory, mechanics, state} |
{light, field, probe} |
{time, decoherence, evolution} |
{temperature, thermal, energy} |
{time, wave, function} |
{vol, operators, histories} |
{algorithm, log, probability} |
{let, theorem, proof} |
{observables, space, algebra} |
{information, entropy, channel} |
{operator, operators, space} |
{cos, sin, state} |
|