REMOTE PREPARATION OF THE TWO-PARTICLE STATE
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Publication:3534109
DOI10.1142/S0219749908003669zbMath1192.81065arXiv0903.1429MaRDI QIDQ3534109
No author found.
Publication date: 3 November 2008
Published in: International Journal of Quantum Information (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/0903.1429
Quantum computation (81P68) Quantum measurement theory, state operations, state preparations (81P15)
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PROBABILISTIC REMOTELY PREPARING AN ARBITRARY TWO-PARTICLE ENTANGLED STATE VIA POSITIVE OPERATOR-VALUED MEASURE ⋮ Joint remote preparation of a class of four-qubit cluster-like states with tripartite entanglements and positive operator-valued measurements ⋮ Classical communication cost and probabilistic remote two-qubit state preparation via POVM and W-type states ⋮ Highly efficient remote preparation of an arbitrary three-qubit state via a four-qubit cluster state and an EPR state ⋮ Controlled remote preparation of a two-qubit state via positive operator-valued measure and two three-qubit entanglements ⋮ Multiparty-controlled joint remote state preparation ⋮ REMOTE PREPARATION OF AN ARBITRARY TWO-PARTICLE PURE STATE VIA NONMAXIMALLY ENTANGLED STATES AND POSITIVE OPERATOR-VALUED MEASUREMENT ⋮ PROBABILISTIC MULTIPARTY-CONTROLLED REMOTE PREPARATION OF AN ARBITRARY m-QUDIT STATE VIA POSITIVE OPERATOR-VALUED MEASUREMENT ⋮ Deterministic controlled remote preparation of two-qutrit equatorial states ⋮ Joint remote preparation of arbitrary two- and three-photon state with linear-optical elements ⋮ JOINT REMOTE PREPARATION OF A MULTI-QUBIT GHZ-CLASS STATE VIA BIPARTITE ENTANGLEMENTS ⋮ Deterministic bidirectional remote state preparation of a- and symmetric quantum states with a proper quantum channel ⋮ Optimal remote preparation of a four-qubit entangled cluster-type state via two non-maximally entangled GHZ-type states ⋮ Symmetric remote single-qubit state preparation via positive operator-valued measurement ⋮ Deterministic joint remote preparation of an arbitrary two-qubit state in noisy environments ⋮ Optimizing scheme for remote preparation of four-particle cluster-like entangled states ⋮ MULTIPARTY REMOTELY PREPARING MULTIPARTITE EQUATORIAL ENTANGLED STATES IN HIGH DIMENSIONS
Cites Work
- Remote preparation of a two-particle entangled state
- Remote preparation of multipartite pure state
- Quantum cryptography based on Bell’s theorem
- Communication via one- and two-particle operators on Einstein-Podolsky-Rosen states
- Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels