Dual-microwave shielding of polar molecules is shown to have an optimal regime where dipolar attraction cancels and the good-to-bad collision ratio peaks, enabling an effective potential that predicts correlated gas states.
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Two- and many-body physics of ultracold molecules dressed by dual microwave fields
Dual-microwave shielding of polar molecules is shown to have an optimal regime where dipolar attraction cancels and the good-to-bad collision ratio peaks, enabling an effective potential that predicts correlated gas states.