KnowraGallium arsenideLinked fromLinked fromThe 19 pages that link to Gallium arsenide, each with the reason it gives.All 19Broader topic 9Related 4Compared with 6SemiconductorBroader topic: It offers faster transport and efficient light emission compared with silicon.Band gapBroader topic: Its direct gap makes it effective for light-emitting and laser applications.Integrated circuitCompared with: It illustrates material alternatives to silicon for specialized integrated circuits.Light-emitting diodeBroader topic: Its efficient infrared emission supports LEDs used in remote controls and sensing.Bipolar junction transistorRelated: Gallium arsenide bipolar transistors can operate at frequencies difficult for silicon devices.ArsenicBroader topic: It exploits arsenic in a compound semiconductor rather than as an elemental material.Semiconductor fabricationCompared with: It offers properties silicon lacks, but requires different substrates and fabrication processes.Gallium nitrideCompared with: GaAs is established in high-frequency electronics, while GaN handles higher power and voltage.GermaniumCompared with: Gallium arsenide offers different speed and light-emission advantages from elemental germanium.GalliumBroader topic: It is a major technology built from gallium, with properties distinct from the pure element.Laser diodeRelated: Gallium arsenide formed the active material in the first demonstrated semiconductor lasers.Semiconductor heterostructureRelated: It is a common layer material in heterostructures paired with aluminum gallium arsenide.ArsineBroader topic: Arsine is a gaseous arsenic source used to grow gallium arsenide layers.Electron mobilityBroader topic: Its comparatively high electron mobility supports fast electronic devices.PnictogenBroader topic: Arsenic forms compounds whose electronic properties support high-speed and light-emitting devices.Lithium niobateCompared with: It offers a different route to integrated electro-optics, with semiconductor fabrication and band-structure advantages.Arsenic trioxideCompared with: Unlike arsenic trioxide, this arsenic compound is valued as an electronic material.Boron groupBroader topic: It converts electrical signals and light efficiently in devices such as laser diodes.Seymour CrayRelated: Cray pursued it for the Cray-3, although fabrication difficulties limited the project.
KnowraGallium arsenideLinked fromLinked fromThe 19 pages that link to Gallium arsenide, each with the reason it gives.All 19Broader topic 9Related 4Compared with 6SemiconductorBroader topic: It offers faster transport and efficient light emission compared with silicon.Band gapBroader topic: Its direct gap makes it effective for light-emitting and laser applications.Integrated circuitCompared with: It illustrates material alternatives to silicon for specialized integrated circuits.Light-emitting diodeBroader topic: Its efficient infrared emission supports LEDs used in remote controls and sensing.Bipolar junction transistorRelated: Gallium arsenide bipolar transistors can operate at frequencies difficult for silicon devices.ArsenicBroader topic: It exploits arsenic in a compound semiconductor rather than as an elemental material.Semiconductor fabricationCompared with: It offers properties silicon lacks, but requires different substrates and fabrication processes.Gallium nitrideCompared with: GaAs is established in high-frequency electronics, while GaN handles higher power and voltage.GermaniumCompared with: Gallium arsenide offers different speed and light-emission advantages from elemental germanium.GalliumBroader topic: It is a major technology built from gallium, with properties distinct from the pure element.Laser diodeRelated: Gallium arsenide formed the active material in the first demonstrated semiconductor lasers.Semiconductor heterostructureRelated: It is a common layer material in heterostructures paired with aluminum gallium arsenide.ArsineBroader topic: Arsine is a gaseous arsenic source used to grow gallium arsenide layers.Electron mobilityBroader topic: Its comparatively high electron mobility supports fast electronic devices.PnictogenBroader topic: Arsenic forms compounds whose electronic properties support high-speed and light-emitting devices.Lithium niobateCompared with: It offers a different route to integrated electro-optics, with semiconductor fabrication and band-structure advantages.Arsenic trioxideCompared with: Unlike arsenic trioxide, this arsenic compound is valued as an electronic material.Boron groupBroader topic: It converts electrical signals and light efficiently in devices such as laser diodes.Seymour CrayRelated: Cray pursued it for the Cray-3, although fabrication difficulties limited the project.