The first minimum appearing in molecular rotational constants as a function of helium droplet size has been previously associated with the onset of superfluidity in these finite systems. We investigate this relationship by bosonic density functional theory calculations of classical molecular rotors (OCS, N<sub>2</sub>O, CO, and HCN) interacting with the surrounding helium. The calculated rotational constants are in fair agreement with the existing experimental data, demonstrating the applicability of the theoretical model. Inspection of the spatial evolution of the global phase and density shows the increase in the rotational constant after the first minimum correlates with continuous coverage of the molecule by helium and the appearance of...
Superfluidity is a many-body quantum effect observed for the first time in liquid helium. In the con...
The feasibility of using rotating molecules as “nanoprobes” for testing the superfluidity of helium ...
We combine experimental and theoretical approaches to explore excited rotational states of molecules...
$^{a}$C. Callegari, A. Conjusteau, I. Reinhard, K.K. Lehman, G. Scoles, and F. Dalfovo, Phys. Rev. L...
$^{a}$C. Callegari, A. Conjusteau, I. Reinhard, K.K. Lehman, G. Scoles, and F. Dalfovo, Phys. Rev. L...
Author Institution: Department of Chemistry, The University of North Carolina, Chapel Hill, NC, 2759...
Author Institution: Department of Chemistry and Pitzer Center for Theoretical Chemistry,; Universi...
Author Institution: Department of Chemistry and Pitzer Center for Theoretical Chemistry,; Universi...
Author Institution: Department of Chemistry, University of VirginiaThe rotational spectra of molecul...
Author Institution: Department of Chemistry, University of Waterloo, Waterloo, Ontario, Canada, N2L ...
International audienceThe clustering, collision, and relaxation dynamics of pristine and doped heliu...
International audienceThe clustering, collision, and relaxation dynamics of pristine and doped heliu...
International audienceThe effects of including rotational degrees of freedom on helium solvation den...
Superfluidity is a many-body quantum effect observed for the first time in liquid helium. In the con...
Superfluidity is a many-body quantum effect observed for the first time in liquid helium. In the con...
Superfluidity is a many-body quantum effect observed for the first time in liquid helium. In the con...
The feasibility of using rotating molecules as “nanoprobes” for testing the superfluidity of helium ...
We combine experimental and theoretical approaches to explore excited rotational states of molecules...
$^{a}$C. Callegari, A. Conjusteau, I. Reinhard, K.K. Lehman, G. Scoles, and F. Dalfovo, Phys. Rev. L...
$^{a}$C. Callegari, A. Conjusteau, I. Reinhard, K.K. Lehman, G. Scoles, and F. Dalfovo, Phys. Rev. L...
Author Institution: Department of Chemistry, The University of North Carolina, Chapel Hill, NC, 2759...
Author Institution: Department of Chemistry and Pitzer Center for Theoretical Chemistry,; Universi...
Author Institution: Department of Chemistry and Pitzer Center for Theoretical Chemistry,; Universi...
Author Institution: Department of Chemistry, University of VirginiaThe rotational spectra of molecul...
Author Institution: Department of Chemistry, University of Waterloo, Waterloo, Ontario, Canada, N2L ...
International audienceThe clustering, collision, and relaxation dynamics of pristine and doped heliu...
International audienceThe clustering, collision, and relaxation dynamics of pristine and doped heliu...
International audienceThe effects of including rotational degrees of freedom on helium solvation den...
Superfluidity is a many-body quantum effect observed for the first time in liquid helium. In the con...
Superfluidity is a many-body quantum effect observed for the first time in liquid helium. In the con...
Superfluidity is a many-body quantum effect observed for the first time in liquid helium. In the con...
The feasibility of using rotating molecules as “nanoprobes” for testing the superfluidity of helium ...
We combine experimental and theoretical approaches to explore excited rotational states of molecules...