LP13000 - Coherent and reversible storage of multi-photon entanglement with a multimode quantum memory
is essential for scalable all-optical quantum information processing. Although single photon has
been successfully stored in different quantum systems, storage of multi-photon entanglement remains
challenging because of the critical requirement for coherent control of photonic entanglement source,
multimode quantum memory, and quantum interface between them. Here we demonstrate a coherent
and reversible storage of biphoton Bell-type entanglement with a holographic multimode atomic-
ensemble-based quantum memory. The retrieved biphoton entanglement violates Bell's inequality
for 1 microsecond storage time and a memory-process fidelity of 98% is demonstrated by quantum state
tomography. Our work makes the first step towards holographic storage of multi-photon entanglement.
This is a blog compiling the latest physics news from the American Physical Society. News sources include lay summaries of Physical Review papers written by the papers' authors, APS Physics Tip Sheets from APS staff, and previews of talks from the Society's meetings.
Wednesday, April 11, 2012
Holographic Storage of Biphoton Entanglement
LP13000 - Coherent and reversible storage of multi-photon entanglement with a multimode quantum memory
is essential for scalable all-optical quantum information processing. Although single photon has
been successfully stored in different quantum systems, storage of multi-photon entanglement remains
challenging because of the critical requirement for coherent control of photonic entanglement source,
multimode quantum memory, and quantum interface between them. Here we demonstrate a coherent
and reversible storage of biphoton Bell-type entanglement with a holographic multimode atomic-
ensemble-based quantum memory. The retrieved biphoton entanglement violates Bell's inequality
for 1 microsecond storage time and a memory-process fidelity of 98% is demonstrated by quantum state
tomography. Our work makes the first step towards holographic storage of multi-photon entanglement.