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- Heterojunction abstract "A heterojunction is the interface that occurs between two layers or regions of dissimilar crystalline semiconductors. These semiconducting materials have unequal band gaps as opposed to a homojunction. It is often advantageous to engineer the electronic energy bands in many solid state device applications including semiconductor lasers, solar cells and transistors ("heterotransistors") to name a few. The combination of multiple heterojunctions together in a device is called a heterostructure although the two terms are commonly used interchangeably. The requirement that each material be a semiconductor with unequal band gaps is somewhat loose especially on small length scales where electronic properties depend on spatial properties. A more modern definition of heterojunction is the interface between any two solid-state materials, including crystalline and amorphous structures of metallic, insulating, fast ion conductor and semiconducting materials.In 2000, the Nobel Prize in physics was awarded jointly to Herbert Kroemer (University of California, Santa Barbara, California, USA) and Zhores I. Alferov (Ioffe Institute, Saint Petersburg, Russia) for "developing semiconductor heterostructures used in high-speed- and opto-electronics"".
- Heterojunction thumbnail Heterojunction_types.png?width=300.
- Heterojunction wikiPageID "662174".
- Heterojunction wikiPageRevisionID "596211350".
- Heterojunction hasPhotoCollection Heterojunction.
- Heterojunction subject Category:Electronics.
- Heterojunction subject Category:Semiconductor_structures.
- Heterojunction type Artifact100021939.
- Heterojunction type Object100002684.
- Heterojunction type PhysicalEntity100001930.
- Heterojunction type SemiconductorStructures.
- Heterojunction type Structure104341686.
- Heterojunction type Whole100003553.
- Heterojunction type YagoGeoEntity.
- Heterojunction type YagoPermanentlyLocatedEntity.
- Heterojunction comment "A heterojunction is the interface that occurs between two layers or regions of dissimilar crystalline semiconductors. These semiconducting materials have unequal band gaps as opposed to a homojunction. It is often advantageous to engineer the electronic energy bands in many solid state device applications including semiconductor lasers, solar cells and transistors ("heterotransistors") to name a few.".
- Heterojunction label "Eterogiunzione".
- Heterojunction label "Heterojunction".
- Heterojunction label "Heterounión".
- Heterojunction label "Heterozłącze".
- Heterojunction label "Heteroübergang".
- Heterojunction label "Hétérojonction".
- Heterojunction label "Гетеропереход".
- Heterojunction label "ヘテロ接合 (半導体)".
- Heterojunction label "异质结".
- Heterojunction sameAs Heteroübergang.
- Heterojunction sameAs Heterounión.
- Heterojunction sameAs Hétérojonction.
- Heterojunction sameAs Eterogiunzione.
- Heterojunction sameAs ヘテロ接合_(半導体).
- Heterojunction sameAs Heterozłącze.
- Heterojunction sameAs m.030r2y.
- Heterojunction sameAs Q1616270.
- Heterojunction sameAs Q1616270.
- Heterojunction sameAs Heterojunction.
- Heterojunction wasDerivedFrom Heterojunction?oldid=596211350.
- Heterojunction depiction Heterojunction_types.png.
- Heterojunction isPrimaryTopicOf Heterojunction.