Connecting the Reentrant Insulating Phase and the Zero-Field Metal-Insulator Transition in a 2D Hole System

R. L. J. Qiu, X. P. A. Gao, L. N. Pfeiffer, and K. W. West
Phys. Rev. Lett. 108, 106404 – Published 7 March 2012

Abstract

We present the transport and capacitance measurements of 10 nm wide GaAs quantum wells with hole densities around the critical point of the 2D metal-insulator transition (critical density pc down to 0.8×1010/cm2, rs36). For metallic hole density pc<p<pc+0.15×1010/cm2, a reentrant insulating phase (RIP) is observed between the ν=1 quantum Hall state and the zero-field metallic state and it is attributed to the formation of pinned Wigner crystal. Through studying the evolution of the RIP versus 2D hole density, we show that the RIP is incompressible and continuously connected to the zero-field insulator, suggesting a similar origin for these two phases.

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  • Received 21 September 2011

DOI:https://doi.org/10.1103/PhysRevLett.108.106404

© 2012 American Physical Society

Authors & Affiliations

R. L. J. Qiu1, X. P. A. Gao1,*, L. N. Pfeiffer2, and K. W. West2

  • 1Department of Physics, Case Western Reserve University, Cleveland, Ohio 44106, USA
  • 2Department of Electrical Engineering, Princeton University, Princeton, New Jersey 08544, USA

  • *xuan.gao@case.edu

Comments & Replies

Comment on “Connecting the Reentrant Insulating Phase and the Zero-Field Metal-Insulator Transition in a 2D Hole System”

A. Yu. Kuntsevich and V. M. Pudalov
Phys. Rev. Lett. 110, 249701 (2013)

Qiu and Gao Reply:

R. L. J. Qiu and X. P. A. Gao
Phys. Rev. Lett. 110, 249702 (2013)

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Vol. 108, Iss. 10 — 9 March 2012

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