The development of van der Waals (vdW) homojunction devices requires materials with narrow bandgaps and simultaneously high hole and electron mobilities for bipolar transport, as well as methods to image and study spatial variations in carrier type and associated conductivity with nanometer spatial resolution. Here, we demonstrate the general capability of near-field scanning microwave microscopy (SMM) to image and study the local carrier type and associated conductivity in operando by studying ambiploar field-effect transistors (FETs) of the 1D vdW material tellurium in 2D form. To quantitatively understand electronic variations across the device, we produce nanometer-resolved maps of the local carrier equivalence backgate voltage. We show...
We demonstrate spatial probing of carrier transport within GaAs/AlGaAs core–shell nanowires with nan...
International audienceNanoelectronic devices play an essential role in many domains, and their devel...
Scanning photocurrent microscopy (SPCM) has been widely used as a powerful experimental technique to...
Optimizing new generations of two-dimensional devices based on van der Waals materials will require ...
Presented on August 29, 2016 at 6:00 p.m. in the Instructional Center, room 105.Keji Lai is an Assis...
The vertical stacking of van der Waals (vdW) materials introduces a new degree of freedom to the res...
Transistors have been improved to achieve higher performance by substantially scaling down the physi...
Most of today’s electronic devices, like solar cells and batteries, are based on nanometer-scale bui...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
Near-field scanning microwave microscopy is a technique with increasing popularity for the study of ...
We introduce ultraresolving terahertz (THz) near-field microscopy based on THz scattering at atomic ...
PtSe2 is unique among all 2D materials by having simultaneously sizable bandgap, high carrier mobili...
This dissertation reports the results of scanning tunneling microscopy experiments probing the physi...
Semiconductor electronic and optoelectronic devices such as transistors, lasers,modulators, and dete...
The full potential of scanning tunnelling microscopy (STM) and scanning tunnelling spectroscopy for ...
We demonstrate spatial probing of carrier transport within GaAs/AlGaAs core–shell nanowires with nan...
International audienceNanoelectronic devices play an essential role in many domains, and their devel...
Scanning photocurrent microscopy (SPCM) has been widely used as a powerful experimental technique to...
Optimizing new generations of two-dimensional devices based on van der Waals materials will require ...
Presented on August 29, 2016 at 6:00 p.m. in the Instructional Center, room 105.Keji Lai is an Assis...
The vertical stacking of van der Waals (vdW) materials introduces a new degree of freedom to the res...
Transistors have been improved to achieve higher performance by substantially scaling down the physi...
Most of today’s electronic devices, like solar cells and batteries, are based on nanometer-scale bui...
The morphology of the thin active layer is one of the main parameters that influence charge transpor...
Near-field scanning microwave microscopy is a technique with increasing popularity for the study of ...
We introduce ultraresolving terahertz (THz) near-field microscopy based on THz scattering at atomic ...
PtSe2 is unique among all 2D materials by having simultaneously sizable bandgap, high carrier mobili...
This dissertation reports the results of scanning tunneling microscopy experiments probing the physi...
Semiconductor electronic and optoelectronic devices such as transistors, lasers,modulators, and dete...
The full potential of scanning tunnelling microscopy (STM) and scanning tunnelling spectroscopy for ...
We demonstrate spatial probing of carrier transport within GaAs/AlGaAs core–shell nanowires with nan...
International audienceNanoelectronic devices play an essential role in many domains, and their devel...
Scanning photocurrent microscopy (SPCM) has been widely used as a powerful experimental technique to...