Full control of molecular interactions, including reactive losses, would open new frontiers in quantum science. Here, we demonstrate extreme tunability of chemical reaction rates by using an external electric field to shift excited collision channels of ultracold molecules into degeneracy with the initial collision channel. In this situation, resonant dipolar interactions mix the channels at long range, dramatically altering the intermolecular potential. We prepare fermionic potassium-rubidium (KRb) molecules in their first excited rotational state and observe a three orders-of-magnitude modulation of the chemical reaction rate as we tune the electric field strength by a few percent across resonance. In a quasi-two-dimensional geometry, we ...
The preparation of ultracold polar molecular gases close to quantum degeneracy opens novel research ...
Chemical reactions in the quantum degenerate regime are described by mixing of matterwave fields. Qu...
13 pages, 8 figuresInternational audienceWe propose a one-channel, simple model to describe the dyna...
Trapped samples of ultracold molecules are often short-lived, because close collisions between them ...
We propose a one-channel, simple model to describe the dynamics of ultracold dipolar molecules aroun...
Microscopic control over polar molecules with tunable interactions would enable realization of novel...
Controlling interactions between cold molecules using external fields can elucidate the role of quan...
Ultracold polar molecules offer strong electric dipole moments and rich internal structure, which ma...
Ultracold polar molecules possess long-range, anisotropic and tunable dipolar interactions, providin...
International audienceThe dipolar collision between ultracold polar molecules is an important topic ...
Ultracold dipolar molecules present many new and novel properties for studying the quantum dynamics ...
We use microwaves to engineer repulsive long-range interactions between ultracold polar molecules. T...
We show that reactive molecules with a unit probability of reaction naturally provide a simulator of...
Polar molecules are an ideal platform for studying quantum information and quantum simulation due to...
We study collisions of ultracold CaF molecules in strong static electric fields. These fields allow ...
The preparation of ultracold polar molecular gases close to quantum degeneracy opens novel research ...
Chemical reactions in the quantum degenerate regime are described by mixing of matterwave fields. Qu...
13 pages, 8 figuresInternational audienceWe propose a one-channel, simple model to describe the dyna...
Trapped samples of ultracold molecules are often short-lived, because close collisions between them ...
We propose a one-channel, simple model to describe the dynamics of ultracold dipolar molecules aroun...
Microscopic control over polar molecules with tunable interactions would enable realization of novel...
Controlling interactions between cold molecules using external fields can elucidate the role of quan...
Ultracold polar molecules offer strong electric dipole moments and rich internal structure, which ma...
Ultracold polar molecules possess long-range, anisotropic and tunable dipolar interactions, providin...
International audienceThe dipolar collision between ultracold polar molecules is an important topic ...
Ultracold dipolar molecules present many new and novel properties for studying the quantum dynamics ...
We use microwaves to engineer repulsive long-range interactions between ultracold polar molecules. T...
We show that reactive molecules with a unit probability of reaction naturally provide a simulator of...
Polar molecules are an ideal platform for studying quantum information and quantum simulation due to...
We study collisions of ultracold CaF molecules in strong static electric fields. These fields allow ...
The preparation of ultracold polar molecular gases close to quantum degeneracy opens novel research ...
Chemical reactions in the quantum degenerate regime are described by mixing of matterwave fields. Qu...
13 pages, 8 figuresInternational audienceWe propose a one-channel, simple model to describe the dyna...