6,011 research outputs found
Describing a Quantum Channel by State Tomography of a Single Probe State
A general law is presented for (composite) quantum systems which directly
describes the time evolution of quantum states (with one or both components)
through an arbitrary noisy quantum channel. It is shown that the time evolution
of all quantum states through a quantum channel can be completely captured by
the evolution of a single 'probe state'. Thus in order to grasp the information
of the final output states subject to a quantum channel, especially an unknown
one, it only requires quantum state tomography of a single probe state, which
dramatically simplifies the practical operations in experiment.Comment: 3 pages, To be publised in EP
Measurable Concurrence of Mixed States
We show that bipartite concurrence for rank-2 mixed states of qubits is
written by an observable which can be exactly and directly measurable in
experiment by local projective measurements, provided that four copies of the
composite quantum system are available. In addition, for a tripartite quantum
pure state of qubits, the 3-tangle is also shown to be measurable only by
projective measurements on the reduced density matrices of a pair of qubits
conditioned on four copies of the state.Comment: 3 page
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