activity
19992001
most citedSelf-consistent non-Markovian theory of a quantum state evolution for quantum information processing

46 citations · 172 across the 7 of their papers we have counts for

collaborators

7 papers

quant-ph2001★ 46 cited

Self-consistent non-Markovian theory of a quantum state evolution for quantum information processing

Doyeol Ahn, Jinhyoung Lee, S. W. Hwang

It is shown that the operator sum representation for non-Markovian dynamics and the Lindblad master equation in Markovian limit can be derived from a formal solution to quantum Lio…

quant-ph2000★ 12 cited

Entangled Quantum Clocks for Measuring Proper-Time Difference

W. Y. Hwang, D. Ahn, S. W. Hwang +1

We report that entangled pairs of quantum clocks (non-degenerate quantum bits) can be used as a specialized detector for precisely measuring difference of proper-times that each co…

quant-ph2000★ 22 cited

Quantum Gambling Using Two Nonorthogonal States

W. Y. Hwang, D. Ahn, S. W. Hwang

We give a (remote) quantum gambling scheme that makes use of the fact that quantum nonorthogonal states cannot be distinguished with certainty. In the proposed scheme, two particip…

quant-ph2000★ 13 cited

Eavesdropper's Optimal Information in Variations of Bennett-Brassard 1984 Quantum Key Distribution in the Coherent Attacks

W. Y. Hwang, D. Ahn, S. W. Hwang

We calculate eavesdropper's optimal information on raw bits in Bennett-Brassard 1984 quantum key distribution (BB84 QKD) and six-state scheme in coherent attacks, using a formula b…

quant-ph2000★ 21 cited

Efficient Schemes for Reducing Imperfect Collective Decoherences

W. Y. Hwang, H. J. Lee, D. Ahn +1

We propose schemes that are efficient when each pair of qubits undergoes some imperfect collective decoherence with different baths. In the proposed scheme, each pair of qubits is…

quant-ph2000★ 25 cited

Correlated Errors in Quantum Error Corrections

W. Y. Hwang, D. Ahn, S. W. Hwang

We show that errors are not generated correlatedly provided that quantum bits do not directly interact with (or couple to) each other. Generally, this no-qubits-interaction conditi…