2001Physical review. B, Condensed matterOpen access

Activation energies for spin-reversed excitations in the fractional quantum Hall effect

Sudhansu S. Mandal, J. K. Jain

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Abstract

The activation energy measured in transport experiments in the fractional Hall regime corresponds to the energy required to create a far separated particle hole pair. We calculate, for several fractional quantum Hall states, the energy gaps for the excitation in which the excited composite fermion reverses its spin-quantum number. Our results indicate that such spin-reversed excitations may be relevant in experimentally accessible regimes.

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The activation energy measured in transport experiments in the fractional Hall regime corresponds to the energy required to create a far separated particle hole pair. We calculate, for several fractional quantum Hall states, the energy gaps for the excitation in which the excited composite fermion reverses its spin-quantum number. Our results indicate that such spin-reversed excitations may be relevant in experimentally accessible regimes.

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Available abstract

The activation energy measured in transport experiments in the fractional Hall regime corresponds to the energy required to create a far separated particle hole pair. We calculate, for several fractional quantum Hall states, the energy gaps for the excitation in which the excited composite fermion reverses its spin-quantum number. Our results indicate that such spin-reversed excitations may be relevant in experimentally accessible regimes.

Key concepts: Fractional quantum Hall effect, Composite fermion, Quantum Hall effect, Physics, Quantum spin Hall effect, Spin (aerodynamics), Excited state, Excitation

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