Bibliographic Details
| Title: |
Observation of entanglement between a quantum dot spin and a single photon. |
| Authors: |
Gao, W. B., Fallahi, P., Togan, E., Miguel-Sanchez, J., Imamoglu, A. |
| Source: |
Nature. 11/15/2012, Vol. 491 Issue 7424, p426-430. 5p. 3 Graphs. |
| Subjects: |
Quantum dots, Photons, Atoms, Semiconductors, Magnetic fields, Nanostructures |
| Abstract: |
Entanglement has a central role in fundamental tests of quantum mechanics as well as in the burgeoning field of quantum information processing. Particularly in the context of quantum networks and communication, a main challenge is the efficient generation of entanglement between stationary (spin) and propagating (photon) quantum bits. Here we report the observation of quantum entanglement between a semiconductor quantum dot spin and the colour of a propagating optical photon. The demonstration of entanglement relies on the use of fast, single-photon detection, which allows us to project the photon into a superposition of red and blue frequency components. Our results extend the previous demonstrations of single-spin/single-photon entanglement in trapped ions, neutral atoms and nitrogen-vacancy centres to the domain of artificial atoms in semiconductor nanostructures that allow for on-chip integration of electronic and photonic elements. As a result of its fast optical transitions and favourable selection rules, the scheme we implement could in principle generate nearly deterministic entangled spin-photon pairs at a rate determined ultimately by the high spontaneous emission rate. Our observation constitutes a first step towards implementation of a quantum network with nodes consisting of semiconductor spin quantum bits. [ABSTRACT FROM AUTHOR] |
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| Database: |
Psychology and Behavioral Sciences Collection |