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Related papers: Phenomenology of the 0.7 conductance feature

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One dimensional (1D) quantum wires exhibit a conductance feature near 0.7 x 2e^2/h in connection with many-body interactions involving the electron spin. With the possibility of exploiting this effect for novel spintronic device…

Mesoscale and Nanoscale Physics · Physics 2009-11-10 D. J. Reilly

The 0.7 2e^2/h conductance anomaly is studied in strongly confined, etched GaAs/GaAlAs quantum point contacts by measuring the differential conductance G as a function of source-drain bias V_sd and gate-source bias V_gs as well as a…

Mesoscale and Nanoscale Physics · Physics 2009-11-07 Anders Kristensen , Henrik Bruus

The integer quantized conductance of one-dimensional electron systems is a well understood effect of quantum confinement. A number of fractionally quantized plateaus are also commonly observed. They are attributed to many-body effects, but…

Mesoscale and Nanoscale Physics · Physics 2011-10-18 A. P. Micolich

Quantum point contacts implemented in p-type GaAs/AlGaAs heterostructures are investigated by low-temperature electrical conductance spectroscopy measurements. Besides one-dimensional conductance quantization in units of $2e^{2}/h$ a…

Mesoscale and Nanoscale Physics · Physics 2013-01-22 Y. Komijani , M. Csontos , I. Shorubalko , T. Ihn , K. Ensslin , Y. Meir , D. Reuter , A. D. Wieck

The 0.7 (2e^2/h) conductance anomaly is studied in strongly confined, etched GaAs/GaAlAs quantum point contacts, by measuring the differential conductance as a function of source-drain and gate bias as well as a function of temperature. We…

Mesoscale and Nanoscale Physics · Physics 2009-01-20 A. Kristensen , H. Bruus , A. E. Hansen , J. B. Jensen , P. E. Lindelof , C. J. Marckmann , J. Nygard , C. B. Sorensen , F. Beuscher , A. Forchel , M. Michel

We study one-dimensional itinerant electron models with ferromagnetic coupling to investigate the origin of 0.7 anomaly in quantum point contacts. Linear conductance calculations from the quantum Monte Carlo technique for spin interactions…

Mesoscale and Nanoscale Physics · Physics 2009-11-13 K. Aryanpour , J. E. Han

The 0.7 conductance anomaly in the quantized conductance of trench etched GaAs quantum point contacts is studied experimentally. The temperature dependence of the anomaly measured with vanishing source-drain bias reveals the same activated…

Mesoscale and Nanoscale Physics · Physics 2007-05-23 A. Kristensen , H. Bruus , A. Forchel , J. B. Jensen , P. E. Lindelof , M. Michel , J. Nygard , C. B. Sorensen

Apart from usual quantization steps on the ballistic conductance of a quasi-one-dimensional conductor, an additional plateau-like feature appears at a fraction of about 0.7 below the first conductance step in GaAs-based quantum point…

Mesoscale and Nanoscale Physics · Physics 2016-07-08 Tadeusz Figielski

The origin of the anomalous transport feature appearing at conductance G \approx 0.7 x (2e2/h) in quasi-1D ballistic devices - the so-called 0.7 anomaly - represents a long standing puzzle. Several mechanisms were proposed to explain it,…

Low temperature transport measurements on a p-GaAs quantum point contact are presented which reveal the presence of a conductance anomaly that is markedly different from the conventional `0.7 anomaly'. A lateral shift by asymmetric gating…

Mesoscale and Nanoscale Physics · Physics 2013-06-05 Y. Komijani , M. Csontos , T. Ihn , K. Ensslin , Y. Meir , D. Reuter , A. D. Wieck

Experiments on quantum point contacts have highlighted an anomalous conductance plateau at $0.7 (2e^2/h)$, with features suggestive of the Kondo effect. Here we present an Anderson model for transport through a point contact which we…

Mesoscale and Nanoscale Physics · Physics 2009-11-07 Yigal Meir , Kenji Hirose , Ned S. Wingreen

Short length quantum wires (quantum contacts) exhibit a conductance structure at the value of conductance close to 0.7 \times 2e^2/h. The structure is also called the conductance anomaly. In longer contacts the structure evolves to the…

Mesoscale and Nanoscale Physics · Physics 2009-11-07 O. P. Sushkov

The phenomenology of the "0.7 anomaly" in quantum point contacts is fully explained in terms of a quasi-localized state, which forms as the point contact opens up. Detailed numerical calculations within spin-density functional theory indeed…

Mesoscale and Nanoscale Physics · Physics 2009-11-13 Yigal Meir

As it is well known there may arise situations when an interaction between electrons is attractive. A weak attraction should manifest itself strongly in 1D systems, since it can create two-electron bound states. This paper interprets the…

Mesoscale and Nanoscale Physics · Physics 2009-10-31 V. V. Flambaum , M. Yu. Kuchiev

Ninety eight one-dimensional channels defined using split gates fabricated on a GaAs/AlGaAs heterostructure are measured during one cooldown at 1.4 K. The devices are arranged in an array on a single chip, and individually addressed using a…

We have studied quantum wires using the Green's function technique and the density-functional theory, calculating the electronic structure and the conductance. All the numerics are implemented using the finite-element method with a…

Mesoscale and Nanoscale Physics · Physics 2009-11-10 Paula Havu , Martti Puska , Risto Nieminen , Ville Havu

Most quantum point contacts (QPCs) fabricated in high-mobility 2D electron gases show a zero-bias conductance peak near pinchoff, but the origin of this peak remains a mystery. Previous experiments have primarily focused on the zero-bias…

Mesoscale and Nanoscale Physics · Physics 2015-05-19 Y. Ren , W. W. Yu , S. M. Frolov , J. A. Folk , W. Wegscheider

Self-consistent modelling based on local spin-density formalism is employed to calculate conductance of quantum point contacts at finite temperatures. The total electrostatic potential exhibits spin-dependent splitting, which persists at…

Mesoscale and Nanoscale Physics · Physics 2007-05-23 A. M. Bychkov , T. M. Stace

We have studied ballistic transport in a 1D channel formed using surface gate techniques on a back-gated, high-mobility, bilayer 2D hole system. At millikelvin temperatures, robust conductance quantization is observed in the quantum wire…

Mesoscale and Nanoscale Physics · Physics 2009-11-11 R. Danneau , W. R. Clarke , O. Klochan , A. P. Micolich , A. R. Hamilton , M. Y. Simmons , M. Pepper , D. A. Ritchie

Over the last decade, interest in one-dimensional charge transport has progressed from the seminal discovery of Landauer quantization of conductance, as a function of carrier density, to finer-scale phenomena at the onset of quantization.…

Mesoscale and Nanoscale Physics · Physics 2018-06-19 Mukunda P. Das , Frederick Green
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