Zeleke Deressa Gerbi, Tesgera Bedassa
The study explores the Fractional Quantum Hall Effect (FQHE) through a field theoretical approach, aiming to provide a comprehensive understanding of its underlying mechanisms. The objective is to analyze the FQHE within the framework of quantum field theory, addressing phenomena that arise in two-dimensional electron systems subjected to strong magnetic fields. Utilizing advanced theoretical tools, the research delves into the behavior of charge carriers and the influence of interactions in fractional quantization. Methodologically, the thesis employs both analytical and numerical techniques to investigate the phase transitions and excitations in FQHE states, drawing on established theories and recent developments in the field. Results reveal insights into the emergent collective phenomena, highlighting the role of topological properties and symmetry breaking in FQHE. The findings contribute to a deeper theoretical understanding of FQHE and pave the way for potential applications in quantum computing and advanced material sciences.
@article{7440597d-ef85-4ed0-8f52-9cc30f19f5f9,
title={Field Theoretical Approach to Fractional Quantum Hall Effect},
author={Zeleke Deressa Gerbi and Tesgera Bedassa},
year={2010},
language={en}
}TY - JOUR TI - Field Theoretical Approach to Fractional Quantum Hall Effect AU - Zeleke Deressa Gerbi AU - Tesgera Bedassa PY - 2010 LA - en ER -
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