Hall mobility - translation to russian
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Hall mobility - translation to russian

CHARACTERIZES HOW QUICKLY AN ELECTRON CAN MOVE THROUGH A METAL OR SEMICONDUCTOR, WHEN PULLED BY AN ELECTRIC FIELD
Hole mobility; Electron Mobility; Matthiessen's rule; Carrier mobility; Semiconductor carrier mobility; Field-effect mobility; Hall mobility; Electron mobility (solid-state physics)
  • Energy band diagram depicting electron transport under multiple trapping and release.
  • Hall effect measurement setup for electrons
  • Hall effect measurement setup for holes
  • [[Density of states]] of a solid possessing a mobility edge, <math>E_{C}</math>.

Hall mobility         

общая лексика

подвижность Холла

carrier mobility         

полупроводники

подвижность носителей тока

hole mobility         

общая лексика

подвижность дырок

физика

подвижность дырочная

Definition

ХОЛЛ, АСАФ
(Hall, Asaph) (1829-1907), американский астроном. Родился 15 октября 1829 в Гошене (шт. Коннектикут). Непродолжительное время учился в Норфолкской академии (шт. Коннектикут), колледже в Макгровилле (шт. Нью-Йорк), при обсерватории Мичиганского университета. В 1857-1862 работал ассистентом в Гарвардской обсерватории, в 1862-1891 - астрономом-наблюдателем на Морской обсерватории в Вашингтоне. В 1897-1901 преподавал небесную механику в Гарвардском университете.
Работы Холла относятся к наблюдательной астрономии. В 1876 он определил период вращения Сатурна, следя за открытым им белым пятном на поверхности планеты. Во время противостояния Марса в 1877 обнаружил спутники Марса, названные впоследствии Деймосом и Фобосом. Наблюдал двойные звезды, в 1892 показал, что два компонента звезды 61 Лебедя составляют физическую пару. Занимался разработкой теории движения планет и их спутников. Руководил несколькими экспедициями для наблюдения полных солнечных затмений. Умер Холл в Аннаполисе (шт. Мэриленд) 22 ноября 1907.

Wikipedia

Electron mobility

In solid-state physics, the electron mobility characterises how quickly an electron can move through a metal or semiconductor when 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.

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, v d {\displaystyle v_{d}} . Then the electron mobility μ is defined as

Electron mobility is almost always specified in units of cm2/(V⋅s). This is different from the SI unit of mobility, m2/(V⋅s). They are related by 1 m2/(V⋅s) = 104 cm2/(V⋅s).

Conductivity is proportional to the product of mobility and carrier concentration. For example, the same conductivity could come from a small number of electrons with high mobility for each, or a large number of electrons with a small mobility for each. For semiconductors, the behavior of transistors and other devices can be very different depending on whether there are many electrons with low mobility or few electrons with high mobility. Therefore mobility is a very important parameter for semiconductor materials. Almost always, higher mobility leads to better device performance, with other things equal.

Semiconductor mobility depends on the impurity concentrations (including donor and acceptor concentrations), defect concentration, temperature, and electron and hole concentrations. It also depends on the electric field, particularly at high fields when velocity saturation occurs. It can be determined by the Hall effect, or inferred from transistor behavior.

What is the Russian for Hall mobility? Translation of &#39Hall mobility&#39 to Russian