Photonic time-bin qubits are well suited to transmission via optical fibers and waveguide circuits. The states take the form 1 √(2) (α|0⟩+eiϕβ|1⟩), with |0⟩ and |1⟩ referring to the early and late time bin, respectively. By controlling the phase of a laser driving a spin-flip Raman transition in a single-hole-charged InAs quantum dot, we demonstrate complete control over the phase, ϕ. We show that this photon generation process can be performed deterministically, with only a moderate loss in coherence. Finally, we encode different qubits in different energies of the Raman scattered light, paving the way for wavelength-division multiplexing at the single-photon level
Spins confined in quantum dots are a leading candidate for solid-state quantum bits that can be cohe...
Time-bin-entangled photons are ideal for long-distance quantum communication via optical fibers. Her...
Practical quantum communication between remote quantum memories rely on single photons at telecom wa...
Photonic time-bin qubits are well suited to transmission via optical fibers and waveguide circuits. ...
Photonic time-bin qubits are well suited to transmission via optical fibers and waveguide circuits. ...
Quantum states superposed across multiple particles or degrees of freedom offer an advantage in the ...
We report on a fast, bandwidth-tunable single-photon source based on an epitaxial GaAs quantum dot. ...
We propose two experimental schemes to implement arbitrary unitary single qubit operations on single...
A quantum computer has the potential to revolutionize multiple industries by enabling a drastic spee...
We report on a fast, bandwidth-tunable single-photon source based on an epitaxial GaAs quantum dot. ...
Deterministic sources of multi-photon entanglement are highly attractive for quantum information pro...
Generation and manipulation of the quantum state of a single photon is at the heart of many quantum ...
We exploit the nonlinearity arising from the spin-photon interaction in an InAs quantum dot to demon...
Teleportation is a fundamental concept of quantum mechanics with an important application in extendi...
Hybrid interfaces between distinct quantum systems play a major role in the implementation of quantu...
Spins confined in quantum dots are a leading candidate for solid-state quantum bits that can be cohe...
Time-bin-entangled photons are ideal for long-distance quantum communication via optical fibers. Her...
Practical quantum communication between remote quantum memories rely on single photons at telecom wa...
Photonic time-bin qubits are well suited to transmission via optical fibers and waveguide circuits. ...
Photonic time-bin qubits are well suited to transmission via optical fibers and waveguide circuits. ...
Quantum states superposed across multiple particles or degrees of freedom offer an advantage in the ...
We report on a fast, bandwidth-tunable single-photon source based on an epitaxial GaAs quantum dot. ...
We propose two experimental schemes to implement arbitrary unitary single qubit operations on single...
A quantum computer has the potential to revolutionize multiple industries by enabling a drastic spee...
We report on a fast, bandwidth-tunable single-photon source based on an epitaxial GaAs quantum dot. ...
Deterministic sources of multi-photon entanglement are highly attractive for quantum information pro...
Generation and manipulation of the quantum state of a single photon is at the heart of many quantum ...
We exploit the nonlinearity arising from the spin-photon interaction in an InAs quantum dot to demon...
Teleportation is a fundamental concept of quantum mechanics with an important application in extendi...
Hybrid interfaces between distinct quantum systems play a major role in the implementation of quantu...
Spins confined in quantum dots are a leading candidate for solid-state quantum bits that can be cohe...
Time-bin-entangled photons are ideal for long-distance quantum communication via optical fibers. Her...
Practical quantum communication between remote quantum memories rely on single photons at telecom wa...