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6 papers

physics.atom-ph2026

Ground and excited potential energy surfaces for CaF+Ca interactions and isotope exchange reactions

Dibyendu Sardar, John L. Bohn

The paper computes ground‑ and excited‑state potential energy surfaces for the CaF + Ca system using high‑level ab initio methods to elucidate atom‑exchange reaction pathways.

physics.atom-ph2026

Limits of Statistical Models of Ultracold Complex Lifetimes

Kevin B. Xu, John L. Bohn

The puzzle of "sticky collisions," in which molecular collision complexes exhibit unexpectedly long lifetimes, remains an unresolved mystery. A central challenge to solving this my…

cond-mat.quant-gas2025

Collisional relaxation in shielded dipolar molecular gases

Reuben R. W. Wang, John L. Bohn

We discuss the influence of collisions on the dynamics of an ultracold gas whose constituents interact via dipolar forces. This dynamics is governed by the elastic scattering cross…

physics.atom-ph2025

CaF+CaF interactions in the ground and excited electronic states: implications for collisional losses

Dibyendu Sardar, Marcin Gronowski, Michał Tomza +1

Accurate \textit{ab initio} potential energy surfaces are essential to understand and predict collisional outcomes in ultracold molecular systems. In this study, we explore the int…

cond-mat.quant-gas2025

Theory of itinerant collisional spin dynamics in nondegenerate molecular gases

Reuben R. W. Wang, John L. Bohn

We study the fully itinerant dynamics of ultracold but nondegenerate polar molecules with a spin- degree of freedom encoded into two of their electric field dressed rotational…

cond-mat.quant-gas2025

Observation of generalized t-J spin dynamics with tunable dipolar interactions

Annette N. Carroll, Henrik Hirzler, Calder Miller +8

Long-range and anisotropic dipolar interactions profoundly modify the dynamics of particles hopping in a periodic lattice potential. We report the realization of a generalized t-J…