We report the coherent coupling of two electron spins at a distance via virtual microwave photons. Each spin is trapped in a silicon double quantum dot at either end of a superconducting resonator, achieving spin-photon couplings up to around gs/2p=40 MHz. As the two spins are brought into resonance with each other, but detuned from the photons, an avoided crossing larger than the spin linewidths is observed with an exchange splitting around 2J/2p=20 MHz. In addition, photon-number states are resolved from the shift 2?s/2p=-13 MHz that they induce on the spin frequency. These observations demonstrate that we reach the strong dispersive regime of circuit quantum electrodynamics with spins. Achieving spin-spin coupling without real photons is...
Electrically addressing spin systems is predicted to be a key component in developing scalable semic...
The realization of a coherent interface between distant charge or spin qubits in semiconductor quant...
We describe a method for implementing deterministic quantum gates between two spin qubits separated ...
We report the coherent coupling of two electron spins at a distance via virtual microwave photons. E...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
We demonstrate the strong coupling between a single electron spin in silicon and a single photon in ...
The interaction of qubits via microwave frequency photons enables long-distance qubit-qubit coupling...
The realization of a coherent interface between distant charge or spin qubits in semiconductor quant...
Electrically addressing spin systems is predicted to be a key component in developing scalable semic...
The realization of a coherent interface between distant charge or spin qubits in semiconductor quant...
We describe a method for implementing deterministic quantum gates between two spin qubits separated ...
We report the coherent coupling of two electron spins at a distance via virtual microwave photons. E...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Long coherence times of single spins in silicon quantum dots make these systems highly attractive fo...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
Spins in semiconductor quantum dots constitute a promising platform for scalable quantum information...
We demonstrate the strong coupling between a single electron spin in silicon and a single photon in ...
The interaction of qubits via microwave frequency photons enables long-distance qubit-qubit coupling...
The realization of a coherent interface between distant charge or spin qubits in semiconductor quant...
Electrically addressing spin systems is predicted to be a key component in developing scalable semic...
The realization of a coherent interface between distant charge or spin qubits in semiconductor quant...
We describe a method for implementing deterministic quantum gates between two spin qubits separated ...