Spin-photon interfaces (SPIs) are key devices of quantum technologies, aimed at coherently transferring quantum information between spin qubits and propagating pulses of polarized light. We study the potential of a SPI for quantum non demolition (QND) measurements of a spin state. After being initialized and scattered by the SPI, the state of a light pulse depends on the spin state. It thus plays the role of a pointer state, information being encoded in the light's temporal and polarization degrees of freedom. Building on the fully Hamiltonian resolution of the spin-light dynamics, we show that quantum superpositions of zero and single photon states outperform coherent pulses of light, producing pointer states which are more distinguishable...
Photon emission correlation spectroscopy is an indispensable tool for the study of atoms, molecules,...
A measurement-based quantum feedback protocol is developed for spin state initialization in a gate-d...
Telecommunication wavelength with well-developed optical communication technologies and low losses i...
We demonstrate that the spin state of solid-state emitters inside micropillar cavities can serve as ...
The interaction of quantum objects lies at the heart of fundamental quantum physics and is key to a ...
In the iconic measurements of atomic spin-1/2 or photon polarization, one employs two spatially sepa...
Deterministic sources of multi-photon entanglement are highly attractive for quantum information pro...
The realization of high-quality special nonclassical states beyond strong single atom-cavity couplin...
The protection of qubit coherence is an essential task in order to build a practical quantum compute...
We consider a quantum interface made of a spin coupled to a one-dimensional atom, and study its pote...
The quantum SWITCH is an example of a process with an indefinite causal structure, and has attracted...
Quantum metrology protocols using entangled states of large spin ensembles attempt to achieve measur...
Reaching a given target quantum state with high fidelity and fast operation speed close to the quant...
Finding feasible measurement bound is important in quantum sensing. We present analytic bound for qu...
Interfaced single-photon sources and quantum memories for photons together form a foundational compo...
Photon emission correlation spectroscopy is an indispensable tool for the study of atoms, molecules,...
A measurement-based quantum feedback protocol is developed for spin state initialization in a gate-d...
Telecommunication wavelength with well-developed optical communication technologies and low losses i...
We demonstrate that the spin state of solid-state emitters inside micropillar cavities can serve as ...
The interaction of quantum objects lies at the heart of fundamental quantum physics and is key to a ...
In the iconic measurements of atomic spin-1/2 or photon polarization, one employs two spatially sepa...
Deterministic sources of multi-photon entanglement are highly attractive for quantum information pro...
The realization of high-quality special nonclassical states beyond strong single atom-cavity couplin...
The protection of qubit coherence is an essential task in order to build a practical quantum compute...
We consider a quantum interface made of a spin coupled to a one-dimensional atom, and study its pote...
The quantum SWITCH is an example of a process with an indefinite causal structure, and has attracted...
Quantum metrology protocols using entangled states of large spin ensembles attempt to achieve measur...
Reaching a given target quantum state with high fidelity and fast operation speed close to the quant...
Finding feasible measurement bound is important in quantum sensing. We present analytic bound for qu...
Interfaced single-photon sources and quantum memories for photons together form a foundational compo...
Photon emission correlation spectroscopy is an indispensable tool for the study of atoms, molecules,...
A measurement-based quantum feedback protocol is developed for spin state initialization in a gate-d...
Telecommunication wavelength with well-developed optical communication technologies and low losses i...