We experimentally demonstrate DC functionality of graphene-based hot electron transistors, which we call graphene base transistors (GBT). The fabrication scheme is potentially compatible with silicon technology and can be carried out at the wafer scale with standard silicon technology. The state of the GBTs can be switched by a potential applied to the transistor base, which is made of graphene. Transfer characteristics of the GBTs show ON/OFF current ratios exceeding 10<sup>4</sup>
Graphene-based capacitors and Graphene base transistors (GBTs) featuring innovative engineered tunne...
Graphene is the first of the two-dimensional (2D) materials to have been experimentally demonstrated...
Following the recent development of the Graphene Base Transistor (GBT), a new electrical compact mod...
We experimentally demonstrate DC functionality of graphene-based hot electron transistors, which we ...
This paper reviews the experimental and theoretical state of the art in ballistic hot electron trans...
We present a novel graphene-based-device concept for a high-frequency operation: a hot-electron grap...
The exceptional properties of the two-dimensional material, graphene, having high-mobility carriers,...
We demonstrate vertical graphene-base hot-electron transistors (GB-HETs) with a variety of structure...
none6noA simulation study aimed at investigating the main features in dc and small-signal operating ...
The Graphene Base Transistor (GBT) is a very promising device concept for analog applications. The d...
The working principles of the hot-electron graphene base transistor (GBT) for analog terahertz opera...
We demonstrate a method that uses the pillars on a stamp to cut and exfoliate graphene islands from ...
The Graphene Base Transistor (GBT) has been recently proposed to possibly overcome the THz limit for...
A transistor includes a silicon carbide crystal (110) having a silicon terminated face (112). A semi...
The speed of silicon-based transistors has reached an impasse in the recent decade, primarily due to...
Graphene-based capacitors and Graphene base transistors (GBTs) featuring innovative engineered tunne...
Graphene is the first of the two-dimensional (2D) materials to have been experimentally demonstrated...
Following the recent development of the Graphene Base Transistor (GBT), a new electrical compact mod...
We experimentally demonstrate DC functionality of graphene-based hot electron transistors, which we ...
This paper reviews the experimental and theoretical state of the art in ballistic hot electron trans...
We present a novel graphene-based-device concept for a high-frequency operation: a hot-electron grap...
The exceptional properties of the two-dimensional material, graphene, having high-mobility carriers,...
We demonstrate vertical graphene-base hot-electron transistors (GB-HETs) with a variety of structure...
none6noA simulation study aimed at investigating the main features in dc and small-signal operating ...
The Graphene Base Transistor (GBT) is a very promising device concept for analog applications. The d...
The working principles of the hot-electron graphene base transistor (GBT) for analog terahertz opera...
We demonstrate a method that uses the pillars on a stamp to cut and exfoliate graphene islands from ...
The Graphene Base Transistor (GBT) has been recently proposed to possibly overcome the THz limit for...
A transistor includes a silicon carbide crystal (110) having a silicon terminated face (112). A semi...
The speed of silicon-based transistors has reached an impasse in the recent decade, primarily due to...
Graphene-based capacitors and Graphene base transistors (GBTs) featuring innovative engineered tunne...
Graphene is the first of the two-dimensional (2D) materials to have been experimentally demonstrated...
Following the recent development of the Graphene Base Transistor (GBT), a new electrical compact mod...