Polar molecules offer a new platform for quantum simulation of systems with long-range interactions, based on the electrostatic interaction between their electric dipole moments. Here, we report the development of coherent quantum state control using microwave fields in 40Ca19F and 87Rb133Cs molecules, a crucial ingredient for many quantum simulation applications. We perform Ramsey interferometry measurements with fringe spacings of ~1 kHz and investigate the dephasing time of a superposition of N = 0 and N = 1 rotational states when the molecules are confined. For both molecules, we show that a judicious choice of molecular hyperfine states minimises the impact of spatially varying transition-frequency shifts across the trap. For magnetica...
We demonstrate coherent microwave control of rotational and hyperfine states of trapped, ultracold, ...
Ultracold polar molecules (UPMs) are emerging as a novel and powerful platform for fundamental appli...
Molecules have vibrational, rotational, spin-orbit and hyperfine degrees of freedom, each of which r...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
We explore coherent multi-photon processes in 87Rb133Cs molecules using 3-level lambda and ladder co...
Quantum states with long-lived coherence are essential for quantum computation, simulation and metro...
Polar molecules in superpositions of rotational states exhibit long-range dipolar interactions, but ...
We demonstrate coherent microwave control of the rotational, hyperfine and Zeeman states of ultracol...
This thesis presents the development of a toolbox for the coherent control of ultracold polar molecu...
We demonstrate coherent control of the rotational and hyperfine state of ultracold, chemically stabl...
We demonstrate coherent microwave control of rotational and hyperfine states of trapped, ultracold, ...
Polar molecules in superpositions of rotational states exhibit long-range dipolar interactions, but ...
We demonstrate coherent microwave control of rotational and hyperfine states of trapped, ultracold, ...
Ultracold polar molecules (UPMs) are emerging as a novel and powerful platform for fundamental appli...
Molecules have vibrational, rotational, spin-orbit and hyperfine degrees of freedom, each of which r...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
We explore coherent multi-photon processes in 87Rb133Cs molecules using 3-level lambda and ladder co...
Quantum states with long-lived coherence are essential for quantum computation, simulation and metro...
Polar molecules in superpositions of rotational states exhibit long-range dipolar interactions, but ...
We demonstrate coherent microwave control of the rotational, hyperfine and Zeeman states of ultracol...
This thesis presents the development of a toolbox for the coherent control of ultracold polar molecu...
We demonstrate coherent control of the rotational and hyperfine state of ultracold, chemically stabl...
We demonstrate coherent microwave control of rotational and hyperfine states of trapped, ultracold, ...
Polar molecules in superpositions of rotational states exhibit long-range dipolar interactions, but ...
We demonstrate coherent microwave control of rotational and hyperfine states of trapped, ultracold, ...
Ultracold polar molecules (UPMs) are emerging as a novel and powerful platform for fundamental appli...
Molecules have vibrational, rotational, spin-orbit and hyperfine degrees of freedom, each of which r...