39
views
0
recommends
+1 Recommend
0 collections
    0
    shares
      • Record: found
      • Abstract: found
      • Article: found
      Is Open Access

      Experimental long-lived entanglement of two macroscopic objects

      Preprint
      , ,

      Read this article at

      Bookmark
          There is no author summary for this article yet. Authors can add summaries to their articles on ScienceOpen to make them more accessible to a non-specialist audience.

          Abstract

          Entanglement is considered to be one of the most profound features of quantum mechanics. An entangled state of a system consisting of two subsystems cannot be described as a product of the quantum states of the two subsystems. In this sense the entangled system is considered inseparable and nonlocal. It is generally believed that entanglement manifests itself mostly in systems consisting of a small number of microscopic particles. Here we demonstrate experimentally the entanglement of two objects, each consisting of about 10^12 atoms. Entanglement is generated via interaction of the two objects - more precisely, two gas samples of cesium atoms - with a pulse of light, which performs a non-local Bell measurement on collective spins of the samples. The entangled spin state can be maintained for 0.5 millisecond. Besides being of fundamental interest, the robust, long-lived entanglement of material objects demonstrated here is expected to be useful in quantum information processing, including teleportation of quantum states of matter and quantum memory.

          Related collections

          Most cited references18

          • Record: found
          • Abstract: found
          • Article: not found

          Unconditional quantum teleportation

          Quantum teleportation of optical coherent states was demonstrated experimentally using squeezed-state entanglement. The quantum nature of the achieved teleportation was verified by the experimentally determined fidelity Fexp = 0.58 +/- 0.02, which describes the match between input and output states. A fidelity greater than 0.5 is not possible for coherent states without the use of entanglement. This is the first realization of unconditional quantum teleportation where every state entering the device is actually teleported.
            Bookmark
            • Record: found
            • Abstract: not found
            • Article: not found

            Squeezed spin states

              Bookmark
              • Record: found
              • Abstract: found
              • Article: found
              Is Open Access

              Experimental quantum teleportation

              Quantum teleportation -- the transmission and reconstruction over arbitrary distances of the state of a quantum system -- is demonstrated experimentally. During teleportation, an initial photon which carries the polarization that is to be transferred and one of a pair of entangled photons are subjected to a measurement such that the second photon of the entangled pair acquires the polarization of the initial photon. This latter photon can be arbitrarily far away from the initial one. Quantum teleportation will be a critical ingredient for quantum computation networks.
                Bookmark

                Author and article information

                Journal
                2001-06-09
                2001-07-19
                Article
                10.1038/35096524
                quant-ph/0106057
                b508d391-8426-4c70-ba4f-6f4d09333d05
                History
                Custom metadata
                Submitted to Nature, June 9, 2001, 11 pages, 3 figures. Contents changed following referees' suggestions
                quant-ph

                Quantum physics & Field theory
                Quantum physics & Field theory

                Comments

                Comment on this article