activity
19962004
most citedAlgorithmic Cooling of Spins: A Practicable Method for Increasing Polarization

1 citations · 1 across the 1 of their papers we have counts for

collaborators

11 papers

quant-ph20041 cited

Algorithmic Cooling of Spins: A Practicable Method for Increasing Polarization

Jose M. Fernandez, Seth Lloyd, Tal Mor +1

An efficient technique to generate ensembles of spins that are highly polarized by external magnetic fields is the Holy Grail in Nuclear Magnetic Resonance (NMR) spectroscopy. Sinc…

quant-ph1999

A Proof of the Security of Quantum Key Distribution

Eli Biham, Michel Boyer, P. Oscar Boykin +2

We prove the security of quantum key distribution against the most general attacks which can be performed on the channel, by an eavesdropper who has unlimited computation abilities…

quant-ph1999

Unextendible Product Bases, Uncompletable Product Bases and Bound Entanglement

David P. DiVincenzo, Tal Mor, Peter W. Shor +2

We report new results and generalizations of our work on unextendible product bases (UPB), uncompletable product bases and bound entanglement. We present a new construction for bou…

quant-ph1999

Algorithms on Ensemble Quantum Computers

P. Oscar Boykin, Tal Mor, Vwani Roychowdhury +1

In ensemble (or bulk) quantum computation, measurements of qubits in an individual computer cannot be performed. Instead, only expectation values can be measured. As a result of th…

quant-ph1999

Quantum memory in quantum cryptography

Tal Mor

[Shortened abstract:] This thesis investigates the importance of quantum memory in quantum cryptography, concentrating on quantum key distribution schemes. In the hands of an eaves…

quant-ph1999

On Universal and Fault-Tolerant Quantum Computing

P. Oscar Boykin, Tal Mor, Matthew Pulver +2

A novel universal and fault-tolerant basis (set of gates) for quantum computation is described. Such a set is necessary to perform quantum computation in a realistic noisy environm…