Javascript must be enabled to continue!
Theory and computation of thermal-field emission from semiconductors
View through CrossRef
Semiconducting field emitters present some interesting features (e.g., self-limited electron emission) for both scientific interest and industrial applications. The analysis of experimental results and device design has been restrained by the lack of accurate 3D models for the simulation of thermal-field emission from semiconductors. Here, we review and correct the equations of field emission from semiconductors and include them to expand GETELEC (General Tool for Electron Emission Calculations). Our method covers all electron emission regimes (field, thermal, and intermediate), aiming to maximize the calculation accuracy while minimizing the computational cost. GETELEC-2.0 is able to reproduce the characteristic non-linear I-V curves in Fowler–Nordheim coordinates obtained from semiconductors, giving insights about their nature, as well as providing an explanation to the lack of experimental observation of the field emitted valence band electrons from semiconductors.
Title: Theory and computation of thermal-field emission from semiconductors
Description:
Semiconducting field emitters present some interesting features (e.
g.
, self-limited electron emission) for both scientific interest and industrial applications.
The analysis of experimental results and device design has been restrained by the lack of accurate 3D models for the simulation of thermal-field emission from semiconductors.
Here, we review and correct the equations of field emission from semiconductors and include them to expand GETELEC (General Tool for Electron Emission Calculations).
Our method covers all electron emission regimes (field, thermal, and intermediate), aiming to maximize the calculation accuracy while minimizing the computational cost.
GETELEC-2.
0 is able to reproduce the characteristic non-linear I-V curves in Fowler–Nordheim coordinates obtained from semiconductors, giving insights about their nature, as well as providing an explanation to the lack of experimental observation of the field emitted valence band electrons from semiconductors.
Related Results
Thermal Effects in High Compactness CEA Stack
Thermal Effects in High Compactness CEA Stack
Thermal management is a pivotal aspect of stack durability and system operability. Consequently, understanding the thermal mapping within a stack based on its operating conditions ...
Near-Surface Properties of Europa Constrained by the Galileo PPR Measurements
Near-Surface Properties of Europa Constrained by the Galileo PPR Measurements
NASA's Europa Clipper mission will characterize the current and recent surface activity of the icy-moon Europa through a wide range of remote sensing observations. In particular, t...
Low Bandgap Organic Semiconductors for Photovoltaic Applications
Low Bandgap Organic Semiconductors for Photovoltaic Applications
Photovoltaic is one of the best low-cost alternative energy sources. In this paper, organic semiconductors were explored as light harvesters due to their extraordinary properties, ...
Modelling Martian Moons Surface Temperature – an update
Modelling Martian Moons Surface Temperature – an update
IntroductionThe martian moons Phobos and Deimos are the main target of the Martian Moons eXploration mission (MMX). The mission will depart from Earth in October 2026, and arrive a...
Thermal modelling of Mercury’s surface for the MERTIS instrument
Thermal modelling of Mercury’s surface for the MERTIS instrument
<p><em>Context</em> &#8211; The Bepi-Colombo mission (ESA-JAXA) will reach Mercury in December 2025 (Benkhoff et al. 2021). Onboar...
Experimental optimal design of the Er3+/Yb3+ codoped BaGd2ZnO5 phosphor and its upconversion luminescence properties
Experimental optimal design of the Er3+/Yb3+ codoped BaGd2ZnO5 phosphor and its upconversion luminescence properties
In order to obtain the Er3+/Yb3+ co-doped BaGd2ZnO5 up-conversion phosphor which has the maximum green and red emission intensity, firstly, the method of homogeneous design rooted ...
Selective thermal emitters based on photonic crystals
Selective thermal emitters based on photonic crystals
Un dels límits fonamentals que afecta l'eficiència de conversió en cèl·lules fotovoltaiques és la distribució espectral de la radiació solar. D'una banda, només els fotons amb ener...
Constraining Enceladus' Endogenic Emission
Constraining Enceladus' Endogenic Emission
Introduction: Enceladus’ activity is concentrated across its south polar terrain (SPT). The activity is concentrated along four fractures dubbed tiger stripes. Constraini...

