Laser-cooled and quantum degenerate atoms are being pursued as quantum simulators and form the basis of today’s most precise sensors. A key challenge toward these goals is to understand and control coherent interactions between the atoms. We observe long-range exchange interactions mediated by an optical cavity, which manifest as tunable spin-spin interactions on the pseudo spin-½ system composed of the millihertz linewidth clock transition in strontium. This leads to one-axis twisting dynamics, the emergence of a many-body energy gap, and gap protection of the optical coherence against certain sources of decoherence. Our observations will aid in the future design of versatile quantum simulators and the next generation of atomic clocks that...
Strongly interacting quantum many-body systems arise in many areas of physics, but their complexity...
The interaction between an atomic ensemble and a light mode in a high-finesse optical cavity can eas...
Strongly interacting quantum many-body systems arise in many areas of physics, but their complexity...
Laser-cooled and quantum degenerate atoms are being pursued as quantum simulators and form the basis...
Strontium optical lattice clocks at JILA recently demonstrated record-high accuracy and stability. T...
Advances in engineering quantum systems are expected to lead to a new generation of quantum technolo...
Utilizing controllable collective light-atom interactions, I explore the properties of large ensembl...
By allowing a large ensemble of laser cooled and trapped 87Rb atoms to interact collectively with an...
We squeeze unconditionally the collective spin of a dilute ensemble of laser-cooled superscript 87]R...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...
For the past decade, the stability of microwave atomic clocks has stood at the standard quantum limi...
Neutral atom optical standards require the highest levels of laser precision to operate near the lim...
Atomic sensors are among the best devices for precision measurements of time, electric and magnetic ...
Squeezing of collective atomic spins has been shown to improve the sensitivity of atomic clocks and ...
Strontium optical lattice clocks represent the current state of the art in precise measurement of ti...
Strongly interacting quantum many-body systems arise in many areas of physics, but their complexity...
The interaction between an atomic ensemble and a light mode in a high-finesse optical cavity can eas...
Strongly interacting quantum many-body systems arise in many areas of physics, but their complexity...
Laser-cooled and quantum degenerate atoms are being pursued as quantum simulators and form the basis...
Strontium optical lattice clocks at JILA recently demonstrated record-high accuracy and stability. T...
Advances in engineering quantum systems are expected to lead to a new generation of quantum technolo...
Utilizing controllable collective light-atom interactions, I explore the properties of large ensembl...
By allowing a large ensemble of laser cooled and trapped 87Rb atoms to interact collectively with an...
We squeeze unconditionally the collective spin of a dilute ensemble of laser-cooled superscript 87]R...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...
For the past decade, the stability of microwave atomic clocks has stood at the standard quantum limi...
Neutral atom optical standards require the highest levels of laser precision to operate near the lim...
Atomic sensors are among the best devices for precision measurements of time, electric and magnetic ...
Squeezing of collective atomic spins has been shown to improve the sensitivity of atomic clocks and ...
Strontium optical lattice clocks represent the current state of the art in precise measurement of ti...
Strongly interacting quantum many-body systems arise in many areas of physics, but their complexity...
The interaction between an atomic ensemble and a light mode in a high-finesse optical cavity can eas...
Strongly interacting quantum many-body systems arise in many areas of physics, but their complexity...