We experimentally demonstrate the generation of heralded bi-chromatic single photons from an atomic collective spin excitation (CSE). The photon arrival times display collective quantum beats, a novel interference effect resulting from the relative motion of atoms in the CSE. A combination of velocity-selective excitation with strong laser dressing and the addition of a magnetic field allows for exquisite control of this collective beat phenomenon. The present experiment uses a diamond scheme with near-IR photons that can be extended to include telecommunications-wavelengths or modified to allow storage and retrieval in an inverted-Y scheme
When N non-interacting atoms interact with a single frequency laser with no phase difference between...
In this thesis I explore the use of collective spin angular momentum as a platform for quantum info...
We experimentally investigate a superconducting circuit composed of two flux qubits ultrastrongly co...
We study the performance and limitations of a coherent interface between collective atomic states an...
DoctorQuantum lights have been the essential sources for exploring fundamental quantum effects in qu...
Understanding strong cooperative optical responses in dense and cold atomic ensembles is vital for f...
High optical nonlinearities can be achieved at the single photon level by coupling the photon states...
We investigate collective emission from coherently driven ultracold 88Sr atoms. We perform two sets ...
Collective excitations in regular structures of strongly interacting driven dipoles have been found ...
Using electromagnetically induced transparency and photon storage, the strong dipolar interactions b...
The generation of non-classical correlations (entanglement) between atoms, photons, or combinations ...
We report significant improvements in the retrieval efficiency of a single excitation stored in an a...
It has been shown elsewhere that two spatially separated atoms can jointly absorb one photon, whose ...
We present, experimentally and theoretically, a scheme for dressed-state electromagnetically induced...
We investigate the collective scattering of coherent light from a thermal alkali-metal vapor with te...
When N non-interacting atoms interact with a single frequency laser with no phase difference between...
In this thesis I explore the use of collective spin angular momentum as a platform for quantum info...
We experimentally investigate a superconducting circuit composed of two flux qubits ultrastrongly co...
We study the performance and limitations of a coherent interface between collective atomic states an...
DoctorQuantum lights have been the essential sources for exploring fundamental quantum effects in qu...
Understanding strong cooperative optical responses in dense and cold atomic ensembles is vital for f...
High optical nonlinearities can be achieved at the single photon level by coupling the photon states...
We investigate collective emission from coherently driven ultracold 88Sr atoms. We perform two sets ...
Collective excitations in regular structures of strongly interacting driven dipoles have been found ...
Using electromagnetically induced transparency and photon storage, the strong dipolar interactions b...
The generation of non-classical correlations (entanglement) between atoms, photons, or combinations ...
We report significant improvements in the retrieval efficiency of a single excitation stored in an a...
It has been shown elsewhere that two spatially separated atoms can jointly absorb one photon, whose ...
We present, experimentally and theoretically, a scheme for dressed-state electromagnetically induced...
We investigate the collective scattering of coherent light from a thermal alkali-metal vapor with te...
When N non-interacting atoms interact with a single frequency laser with no phase difference between...
In this thesis I explore the use of collective spin angular momentum as a platform for quantum info...
We experimentally investigate a superconducting circuit composed of two flux qubits ultrastrongly co...