Published October 22, 2010
| Version Accepted Version + Published
Journal Article
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Tilt-Induced Anisotropic to Isotropic Phase Transition at ν = 5/2
Abstract
A modest in-plane magnetic field B_(∥) is sufficient to destroy the fractional quantized Hall states at ν=5/2 and 7/2 and replace them with anisotropic compressible phases. Remarkably, we find that at larger B_(∥) these anisotropic phases can themselves be replaced by isotropic compressible phases reminiscent of the composite fermion fluid at ν=1/2. We present strong evidence that this transition is a consequence of the mixing of Landau levels from different electric subbands. We also report surprising dependences of the energy gaps at ν=5/2 and 7/3 on the width of the confinement potential.
Additional Information
© 2010 The American Physical Society. Received 15 June 2010; published 22 October 2010. We thank Edward Rezayi for helpful discussions. This work was supported via Microsoft Project Q.Attached Files
Published - Xia2010p11754Phys_Rev_Lett.pdf
Accepted Version - 1006.2199.pdf
Files
1006.2199.pdf
Additional details
Identifiers
- Eprint ID
- 20726
- Resolver ID
- CaltechAUTHORS:20101109-090441714
Related works
- Describes
- https://arxiv.org/abs/1006.2199 (URL)
Funding
- Microsoft Project Q
Dates
- Created
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2010-11-16Created from EPrint's datestamp field
- Updated
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2021-11-09Created from EPrint's last_modified field