ABSTRACT In this Perspective article, we present recent developments on interaction effects on the carrier transport properties of one-dimensional (1D) semiconductor quantum wires fabricated using the GaAs/AlGaAs system, particularly the emergence of the long predicted fractional quantization of conductance in the absence of a magnetic field. Over three decades ago, it was shown that transport through a 1D system leads to integer quantized conductance given by N·2e2/h, where N is the number of allowed energy levels (N = 1, 2, 3, …). Recent experiments have shown that a weaker confinement potential and low carrier concentration provide a testbed for electrons strongly interacting. The consequence leads to a reconfiguration of the electron d...
In this chapter, we present developments in quantum transport in one-dimensional (1D) semiconductor ...
The properties of conductance in one-dimensional (1D) quantum wires are statistically investigated u...
The properties of conductance in one-dimensional (1D) quantum wires are statistically investigated u...
ABSTRACT In this Perspective article, we present recent developments on interaction effects on the ...
Since the discovery of the fractional quantum Hall effect in 1982 there has been considerable theore...
We have investigated the transport properties of a two-dimensional electron gas confined to one dime...
Since the discovery of the fractional quantum Hall effect in 1982 there has been considerable theore...
A simple route to generate magnetotransport data is reported that results in fractional quantum Hall...
One-dimensional metals, such as quantum wires or carbon nanotubes, can carry charge in arbitrary uni...
We have investigated hole transport in quantum wires formed by electrostatic confinement in strained...
Since the initial realisation of split-gate device and quantised plateaus of conductance in one-dime...
We study the low-temperature transport properties of 1D quantum wires as the confinement strength V-...
Altres ajuts: CERCA Programme/Generalitat de CatalunyaConductance quantization is the quintessential...
The fractional quantum Hall effect occurs when an extremely clean 2-dimensional fermion gas is subje...
Thanks to the development of the semiconductor industry, we are able to grow 2D material with fewer ...
In this chapter, we present developments in quantum transport in one-dimensional (1D) semiconductor ...
The properties of conductance in one-dimensional (1D) quantum wires are statistically investigated u...
The properties of conductance in one-dimensional (1D) quantum wires are statistically investigated u...
ABSTRACT In this Perspective article, we present recent developments on interaction effects on the ...
Since the discovery of the fractional quantum Hall effect in 1982 there has been considerable theore...
We have investigated the transport properties of a two-dimensional electron gas confined to one dime...
Since the discovery of the fractional quantum Hall effect in 1982 there has been considerable theore...
A simple route to generate magnetotransport data is reported that results in fractional quantum Hall...
One-dimensional metals, such as quantum wires or carbon nanotubes, can carry charge in arbitrary uni...
We have investigated hole transport in quantum wires formed by electrostatic confinement in strained...
Since the initial realisation of split-gate device and quantised plateaus of conductance in one-dime...
We study the low-temperature transport properties of 1D quantum wires as the confinement strength V-...
Altres ajuts: CERCA Programme/Generalitat de CatalunyaConductance quantization is the quintessential...
The fractional quantum Hall effect occurs when an extremely clean 2-dimensional fermion gas is subje...
Thanks to the development of the semiconductor industry, we are able to grow 2D material with fewer ...
In this chapter, we present developments in quantum transport in one-dimensional (1D) semiconductor ...
The properties of conductance in one-dimensional (1D) quantum wires are statistically investigated u...
The properties of conductance in one-dimensional (1D) quantum wires are statistically investigated u...