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- Electron and hole mobility are special cases of electrical mobility of charged particles in a fluid under an applied electric field1.
- When an electric field E is applied across a piece of material, the electrons respond by moving with an average velocity called the drift velocity1.
- Electrons and holes move at the thermal velocity but not in a simple straight-line fashion. Their directions of motion change frequently due to collisions or scattering2.
- The mobility of electron particles is higher than that of holes, as holes have a higher mass. This is because holes move in a fixed orbit around an atom and are generally the gap created by missing electrons3.
Learn more:✕This summary was generated using AI based on multiple online sources. To view the original source information, use the "Learn more" links.Electron and hole mobility are special cases of electrical mobility of charged particles in a fluid under an applied electric field. When an electric field E is applied across a piece of material, the electrons respond by moving with an average velocity called the drift velocity,.en.wikipedia.org/wiki/Electron_mobilityelectrons and holes is 2.5 × 107cm/s, which is about 1000 times slower than the speed of light and 100 times faster than the sonic speed. Electrons and holes move at the thermal velocity but not in a simple straight-line fashion. Their directions of motion change frequently due to collisions or scatteringwww.chu.berkeley.edu/wp-content/uploads/2020/0…The Mobility of electron particles is higher than that of holes, as holes have a higher mass. This is because holes move in a fixed orbit around an atom and are generally the gap created by missing electrons.unacademy.com/content/upsc/study-material/physi… - People also ask
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Electron mobility - Wikipedia
In solid-state physics, the electron mobility characterises how quickly an electron can move through a metal or semiconductor when pushed or pulled by an electric field. There is an analogous quantity for holes, called hole mobility. The term carrier mobility refers in general to both electron and hole mobility. See more
Drift velocity in an electric field
Without any applied electric field, in a solid, electrons and holes move around randomly. … See moreWhile in crystalline materials electrons can be described by wavefunctions extended over the entire solid, this is not the case in systems with appreciable structural disorder, such as See more
The charge carriers in semiconductors are electrons and holes. Their numbers are controlled by the concentrations of impurity elements, i.e. doping concentration. Thus doping concentration has great influence on carrier mobility.
While there is … See moreAt low fields, the drift velocity vd is proportional to the electric field E, so mobility μ is constant. This value of μ is called the low-field mobility.
As the electric field is … See moreRecall that by definition, mobility is dependent on the drift velocity. The main factor determining drift velocity (other than effective mass) is scattering time, i.e. how long the carrier is See more
Hall mobility
Carrier mobility is most commonly measured using the Hall effect. The result of the measurement is called the "Hall mobility" (meaning … See moreWikipedia text under CC-BY-SA license - PDF files of mobility of electrons and holes
Mobility of electrons and holes in semiconductors
Electron and hole mobility
4: Carrier Drift and Mobility - Engineering LibreTexts
Carrier mobility is useful as it is the ratio of drift velocity to the electric field strength. Below we will give the mathematical definition and substitute mobility (given as μ n ) into the current density equation.
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