Richard Cleve, David P. DiVincenzo
Physical Review A - AMO
Security trade-offs have previously been established for one-way bit commitment. We study this trade-off in two superselection settings. We show that for an 'abelian' superselection rule (exemplified by particle conservation), the standard trade-off between sealing and binding properties still holds. For the non-abelian case (exemplified by angular momentum conservation), the security trade-off can be more subtle, which we illustrate by showing that if the bit commitment is forced to be ancilla-free, an asymptotically secure quantum bit commitment is possible.
Richard Cleve, David P. DiVincenzo
Physical Review A - AMO
Andrew W. Cross, Graeme Smith, et al.
Physical Review A - AMO
Ting Zhang, Graeme Smith, et al.
npj Quantum Information
Michal Horodecki, Pawel Horodecki, et al.
Quantum Information and Computation