Ground State of a System of N Hard Core Quantum Particles in 1D Box
Abstract
The ground state of a system of impenetrable hard core quantum particles in a 1-D box is analyzed by using a new scheme applied recently to study a similar system of two such particles {\it [Centl. Eur. J. Phys., 2(4), 709 (2004)]}. Accordingly, each particle of the system behaves like an independent entity represented by a {\it macro-orbital}, -a kind of pair waveform identical to that of a pair of particles moving with (, ) momenta at their {\it center of mass} which may have any momentum in the laboratory frame. It concludes: (i) , (ii) and (iii) (with being the average nearest neighbour distance), {\it etc.} While all bosons in their ground state have and , fermions have with different ranging between 0 and (the Fermi wave vector). Independent of their bosonic or fermionic nature, all particles in the ground state define a close packed arrangement of their equal size wave packets representing an ordered state in phase ()space with (with = 1,2,3, ...), , and . As such our approach uses greatly simplified mathematical formulation and renders a visibly clear picture of the low energy states of the systems and its results supplement earlier studies in providing their complete understanding.
Keywords
Cite
@article{arxiv.cond-mat/0606409,
title = {Ground State of a System of N Hard Core Quantum Particles in 1D Box},
author = {Yatendra S Jain},
journal= {arXiv preprint arXiv:cond-mat/0606409},
year = {2007}
}
Comments
19 pages, no figures