2000Physical review. B, Condensed matterRequires access

Theoretical study of the stability of the fractional quantum Hall effect in higher Landau levels

Tarek Sbeouelji, K. Park, J. K. Jain, N. Meskini

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Abstract

We have studied the fractional quantum Hall effect in higher Landau levels following Jain's composite-fermion theory. Our framework provides numerical calculations for the gaps in a range of electron densities typically used in experiments. As expected, the gaps diminish as the Landau level index increases. Surprisingly, however, they become negative in the third and higher Landau levels, indicating an absence of the fractional quantum Hall effect beyond the second Landau level.

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What this paper is about

We have studied the fractional quantum Hall effect in higher Landau levels following Jain's composite-fermion theory. Our framework provides numerical calculations for the gaps in a range of electron densities typically used in experiments. As expected, the gaps diminish as the Landau level index increases. Surprisingly, however, they become negative in the third and higher Landau levels, indicating an absence of the fractional quantum Hall effect beyond the second Landau level.

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Available abstract

We have studied the fractional quantum Hall effect in higher Landau levels following Jain's composite-fermion theory. Our framework provides numerical calculations for the gaps in a range of electron densities typically used in experiments. As expected, the gaps diminish as the Landau level index increases. Surprisingly, however, they become negative in the third and higher Landau levels, indicating an absence of the fractional quantum Hall effect beyond the second Landau level.

Key concepts: Landau quantization, Composite fermion, Fractional quantum Hall effect, Quantum Hall effect, Physics, Shubnikov–de Haas effect, Condensed matter physics, Quantum spin Hall effect

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