We introduce the study of quantum protocols that probabilistically simulate quantum channels from a sender in the future to a receiver in the past. The maximum probability of simulation is determined by causality and depends on the amount and type (classical or quantum) of information that the channel can transmit. We illustrate this dependence in several examples, including ideal classical and quantum channels, measure-and-prepare channels, partial trace channels, and universal cloning channels. For the simulation of partial trace channels, we consider generalized teleportation protocols that take N input copies of a pure state in the future and produce M≤N output copies of the same state in the past. In this case, we show that the maximum...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mathematics, 2008.In title on title...
Bidirectional teleportation is a fundamental protocol for exchanging quantum information between two...
Entanglement is a feature at the heart of quantum information. Its enablement of unusual correlatio...
Two novel schemes are proposed to teleport an unknown two-level quantum state probabilistically when...
We introduce a generalized concept of quantum teleportation in the framework of quantum measurement ...
To a certain extend experimental quantum teleportation has been demonstrated. A minimal scheme to t...
In the presence of quantum noise a perfect EPR pair becomes imperfect and may be described by a non-...
Probabilistic unitary maps and probabilistic unitary quantum channels are introduced, many quantum i...
Quantum teleportation of qudits is revisited. In particular, we analyze the case where the quantum c...
We describe a new protocol where, by using a non-maximally entangled basis as the measurement basis,...
© 2014 American Physical Society. Quantum technology promises revolutionary advantages in informatio...
In this thesis we investigate the fundamental limitations that the laws of the quantum nature impose...
In a previous paper, we showed that many important quantum information-theoretic phenomena, includin...
In this review we discuss how channel simulation can be used to simplify the most general protocols ...
We establish the best possible approximation to a perfect quantum cloning machine which produces two...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mathematics, 2008.In title on title...
Bidirectional teleportation is a fundamental protocol for exchanging quantum information between two...
Entanglement is a feature at the heart of quantum information. Its enablement of unusual correlatio...
Two novel schemes are proposed to teleport an unknown two-level quantum state probabilistically when...
We introduce a generalized concept of quantum teleportation in the framework of quantum measurement ...
To a certain extend experimental quantum teleportation has been demonstrated. A minimal scheme to t...
In the presence of quantum noise a perfect EPR pair becomes imperfect and may be described by a non-...
Probabilistic unitary maps and probabilistic unitary quantum channels are introduced, many quantum i...
Quantum teleportation of qudits is revisited. In particular, we analyze the case where the quantum c...
We describe a new protocol where, by using a non-maximally entangled basis as the measurement basis,...
© 2014 American Physical Society. Quantum technology promises revolutionary advantages in informatio...
In this thesis we investigate the fundamental limitations that the laws of the quantum nature impose...
In a previous paper, we showed that many important quantum information-theoretic phenomena, includin...
In this review we discuss how channel simulation can be used to simplify the most general protocols ...
We establish the best possible approximation to a perfect quantum cloning machine which produces two...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mathematics, 2008.In title on title...
Bidirectional teleportation is a fundamental protocol for exchanging quantum information between two...
Entanglement is a feature at the heart of quantum information. Its enablement of unusual correlatio...