Bulletin of the American Physical Society
APS March Meeting 2019
Volume 64, Number 2
Monday–Friday, March 4–8, 2019; Boston, Massachusetts
Session L43: New Developments in the FQHE in Half-filled Landau Levels
11:15 AM–2:15 PM,
Wednesday, March 6, 2019
BCEC
Room: 210B
Sponsoring
Unit:
DCMP
Abstract: L43.00001 : Observation of half-integer thermal Hall conductance
11:15 AM–11:51 AM
View Presentation Abstract
Presenter:
Moty Heiblum
(Weizmann Institute of Science)
Authors:
Moty Heiblum
(Weizmann Institute of Science)
Mitali Banerjee
(Weizmann Institute of Science)
Vladimir Umansky
(Weizmann Institute of Science)
Dmitri Feldman
(Brown University)
Yuval Oreg
(Weizmann Institute of Science)
Ady Stern
(Weizmann Institute of Science)
Unlike the relative ease in determining accurately the quantization of the electrical conductance, measuring accurately the thermal conductance is more challenging as heat flow is not conserved, accurate and noninvasive temperature measurements not trivial, and inter-mode equilibration is not fully understood.
The universality of the quantum of Gth was already demonstrated for weakly interacting particles: phonons [3], photons [4], and electronic Fermi-liquids [5]. I will describe our work on thermal conductance measurements in the QHE regime. We first focused on the Integer, Laughlin’s, and hole-conjugate (½< filling <1) states [6] - proving the universality of k0. We extended our studies to the fractional states in the first-excited Landau level (2<v<3), and in particular on the v=5/2 state. We find in the latter a deviation from the quantization of the thermal conductance, agreeing in good accuracy with Gth=(2+½)k0T; suggesting the non-abelian character of the state [7]. This topological order was not expected in previous numerical works.
1. J. B. Pendry, J. Phys. A 16, 2161 (1983)
2. C. L. Kane et al., Phys. Rev. B 55, 15832 (1997)
3. K. Schwab et al., Nature 404, 974 (2000)
4. M. Meschke et al., Nature 444, 187 (2006)
5. S. Jezouin et al., Science 342, 601 (2013)
6. M. Banerjee et. al., Nature 545, 75 (2017)
7. M. Banerjee et. al., Nature 559, 205 (2018)
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