arXiv Analytics

Sign in

arXiv:2306.14452 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Phenomenon of multiple reentrant localization in a double-stranded helix with transverse electric field

Sudin Ganguly, Suparna Sarkar, Kallol Mondal, Santanu K. Maiti

Published 2023-06-26Version 1

The present work explores the potential for observing multiple reentrant localization behavior in a double-stranded helical (DSH) system, extending beyond the conventional nearest-neighbor hopping interaction. The DSH system is considered to have hopping dimerization in each strand, while also being subjected to a transverse electric field. The inclusion of an electric field serves the dual purpose of inducing quasiperiodic disorder and strand-wise staggered site energies. Two reentrant localization regions are identified: one exhibiting true extended behavior in the thermodynamic limit, while the second region shows quasi-extended characteristics with partial spreading within the helix. The DSH system exhibits three distinct single-particle mobility edges linked to localization transitions present in the system. The analysis in this study involves examining various parameters such as the single-particle energy spectrum, inverse participation ratio, local probability amplitude, and more. Our proposal, combining achievable hopping dimerization and induced correlated disorder, presents a unique opportunity to study phenomenon of reentrant localization, generating significant research interest.

Related articles: Most relevant | Search more
arXiv:2212.01841 [cond-mat.mes-hall] (Published 2022-12-04)
Electronic properties of Janus black arsenic-phosphorus (b-AsP) nanoribbons under transverse electric field
arXiv:cond-mat/0510480 (Published 2005-10-18, updated 2006-02-02)
Bandgap modulation of narrow-gap carbon nanotubes in a transverse electric field
arXiv:0909.3428 [cond-mat.mes-hall] (Published 2009-09-18)
Deflection of suspended graphene by a transverse electric field