Remote Implementation of Quantum Operations
arXiv:quant-ph/0509057 · doi:10.1088/1464-4266/7/10/026
Abstract
Shared entanglement allows, under certain conditions, the remote implementation of quantum operations. We revise and extend recent theoretical results on the remote control of quantum systems as well as experimental results on the remote manipulation of photonic qubits via linear optical elements.
To be published in JOPB special issue on Quantum Control
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Cited by in corpus (11)
- Controlled and combined remote implementations of partially unknown quantum operations of multiqubits using GHZ states
- Remote implementations of partially unknown quantum operations of multiqubits
- Experimental Demonstration of Non-local Controlled-Unitary Quantum Gates Using a Five-qubit Quantum Computer
- Hybrid protocol of remote implementations of quantum operations
- Scheme for remote implementation of partially unknown quantum operation of two qubits in cavity QED
- Local implementations of non-local quantum gates in linear entangled channel
- Controlled remote implementation of operations via graph states
- Nonlocal transfer of high-dimensional unitary operations
- Experimental nonlocality-based network diagnostics of mutipartite entangled states
- A proposal for a conditional definition of the Swap Gate
- Multiparty Quantum Remote Control