Protocols for quantum communication between massive particles, such as atoms, are usually based on transmitting nonclassical light, and/or super-high finesse optical cavities are normally needed to enhance interaction between atoms and photons. We demonstrate a surprising result: an unknown quantum state can be teleported from one free-space atomic ensemble to the other by transmitting only coherent light. No non-classical light and no cavities are needed in the scheme, which greatly simplifies its experimental implementation
Engineering strong interactions between quantum systems is essential for many phenomena of quantum p...
The problem of long-distance teleportation of single-atom qubits via a common photonic channel is ex...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
We report on the coherent quantum state transfer from a two-level atomic system to a single photon. ...
We show how high fidelity quantum teleportation of light to atoms can be achieved in the same setup ...
Quantum teleportation is one of the main paradigms in quantum information science. It is an importan...
We show that quantum information may be transferred between atoms in different locations by using “p...
We demonstrate the reversible mapping of a coherent state of light with mean photon number n-bar ~= ...
We present a protocol for performing entanglement connection between pairs of atomic ensembles in th...
We propose a scheme for teleporting an atomic center-of-mass wave function between distant locations...
Current experiments in our group explore the quantum interface between matter and light, with the go...
We show how the state of an atom trapped in a cavity can be teleported to an atom trapped in a dista...
Quantum information science attempts to exploit capabilities from the quantum realm to accomplish ta...
Devices that harness the surprising properties of quantum systems at scale hold the possibility...
A critical requirement for diverse applications in quantum information science is the capability to ...
Engineering strong interactions between quantum systems is essential for many phenomena of quantum p...
The problem of long-distance teleportation of single-atom qubits via a common photonic channel is ex...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
We report on the coherent quantum state transfer from a two-level atomic system to a single photon. ...
We show how high fidelity quantum teleportation of light to atoms can be achieved in the same setup ...
Quantum teleportation is one of the main paradigms in quantum information science. It is an importan...
We show that quantum information may be transferred between atoms in different locations by using “p...
We demonstrate the reversible mapping of a coherent state of light with mean photon number n-bar ~= ...
We present a protocol for performing entanglement connection between pairs of atomic ensembles in th...
We propose a scheme for teleporting an atomic center-of-mass wave function between distant locations...
Current experiments in our group explore the quantum interface between matter and light, with the go...
We show how the state of an atom trapped in a cavity can be teleported to an atom trapped in a dista...
Quantum information science attempts to exploit capabilities from the quantum realm to accomplish ta...
Devices that harness the surprising properties of quantum systems at scale hold the possibility...
A critical requirement for diverse applications in quantum information science is the capability to ...
Engineering strong interactions between quantum systems is essential for many phenomena of quantum p...
The problem of long-distance teleportation of single-atom qubits via a common photonic channel is ex...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...