Fault-tolerant architectures for superconducting qubits
David P. DiVincenzo
Nobel Symposium: Qubits for Future Quantum Information 2009
Recent work has shown how to use the laws of quantum mechanics to keep classical and quantum bits secret in a number of different circumstances. Among the examples are private quantum channels, quantum secret sharing and quantum data hiding. In this paper we show that a method for keeping two classical bits hidden in any such scenario can be used to construct a method for keeping one quantum bit hidden, and vice-versa. In the realm of quantum data hiding, this allows us to construct bipartite and multipartite hiding schemes for qubits from the previously known constructions for hiding bits.
David P. DiVincenzo
Nobel Symposium: Qubits for Future Quantum Information 2009
David P. DiVincenzo, Peter W. Shor, et al.
Physical Review A - AMO
David P. DiVincenzo, William Krakow, et al.
Journal of Non-Crystalline Solids
Krysta M. Svore, Barbara M. Terhal, et al.
Physical Review A - AMO