Bosons

Hartree-Fock Theory of Double Condensates 
B. D. Esry, C. H. Greene, J. P. Burke, and J. L. Bohn, Phys. Rev. Lett. 78, 3594 (1997).

Prospects for Mixed-isotope Bose-Einstein Condensates in Rubidium 
J. P. Burke, J L. Bohn, B. D. Esry, and C. H. Greene, Phys. Rev. Lett. 80, 2097 (1998).

Effective Potentials for Bose-Einstein Condensates 
J. L. Bohn, B. D. Esry, and C. H. Greene, Phys. Rev. A 58, 584 (1998).

Nature of Spinor Bose-Einstein Condensates in Rubidium 
N. N. Klausen, J. L. Bohn, and C. H. Greene, Phys. Rev. A 64, 053602 (2001).

Dynamical Pattern Formation During Growth of a Dual-Species Bose-Einstein Condensate 
S. Ronen, J. L. Bohn, L. E. Halmo, and M. Edwards, Phys. Rev. A 78, 053613 (2008).

Quenching to Unitarity: Quantum Dynamics in a 3D Bose Gas
 A. G. Sykes, J. P. Corson, J. P. D’Incao, A. P. Koller, C. H. Greene, A. M. Rey, K. R. A. Hazzard, and J. L. Bohn, Phys. Rev. A 89, 021601(R) (2014).
 

Bound-State Sigantures in Quenched Bose-Einstein Condensates
J. P. Corson and J. L. Bohn, Phys. Rev. A 91, 013616 (2015).

Hyperspherical-LOCV Approach to Resonant BEC
M. W. C. Sze, A. G. Sykes, D. Blume, and J. L. Bohn Phys. Rev. A 97, 033608 (2018).

Harmonically Trapped Four-Boson System
D. Blume, M. W. C. Sze, and J. L. Bohn, Phys. Rev. A 97, 033621 (2018).

Two-Step Production of Resonant Bose-Einstein Condensates
M. W. C. Sze and J. L. Bohn, Phys. Rev. A 99, 033606 (2019).

Quench-Produced Solitons in a Box-Trapped Bose-Einstein Condensate
E. J. Halperin and J. L. Bohn, Phys. Rev. Res. 2, 043256 (2020).

 study   © John Bohn 2013