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Solid-state electronics based on electron spin
spintronics concerns spin-charge coupling in metallic systems. The analogous effects in insulators fall into the field of multiferroics. Spintronics fundamentally
Spintronics
Scientific field of study
Many condensed matter experiments are aiming to fabricate workable spintronics and quantum computers. In particle physics, the first pieces of experimental
Physics
Indian-American scientist and educator
has contributed through his foundational work on quantum transport, spintronics and negative capacitance electronics. He has also worked on probabilistic
Supriyo_Datta
Spectral line splitting in magnetic field
Zeeman-energy mediated coupling of spin and orbital motions is used in spintronics for controlling electron spins in quantum dots through electric dipole
Zeeman_effect
Russian scientist
2001). "Spintronics: A spin-based electronics vision for the future". ProQuest. Wolf, S A; Chtchelkanova, A Y; Treger, D M (Jan 2006). "Spintronics-A retrospective
Almadena_Chtchelkanova
Norwegian research center
Center for Quantum Spintronics (QuSpin) - NTNU". www.ntnu.edu. Retrieved 2020-06-10. "About QuSpin - Center for Quantum Spintronics (QuSpin) - NTNU". www
Center for Quantum Spintronics
Center_for_Quantum_Spintronics
American electrical engineer (born 1984)
inventor known for his work in Beyond CMOS energy-efficient computing, spintronics and Silicon photonics. He is the lead author on Intel's 2018 Nature paper
Sasikanth_Manipatruni
Activity involving calculations or computing machinery
allows more timely upgrades of CPUs. Another field of research is spintronics. Spintronics can provide computing power and storage without heat buildup. Some
Computing
Computing by new or unusual methods
which can be used for object detection, tracking, and classification. Spintronics is a field of study that involves the use of the intrinsic spin and magnetic
Unconventional_computing
Indian-born American electrical engineer
Introduction to Spintronics, Second edition (2015) ISBN 9781482255577 Jayasimha Atulasimha and Supriyo Bandyopadhyay, eds, Nanomagnetic and Spintronic Devices
Supriyo_Bandyopadhyay
Crystal growth process
monocrystalline semiconductors, semiconducting heterostructures, materials for spintronics and other compound material systems containing Al, Ga, As, P, Mn, Cu
Molecular-beam_epitaxy
French physicist (born 1938)
contributions to the development of spintronics. Following his 2007 Nobel Prize, he began to explore possible spintronics applications of topological properties
Albert_Fert
American physicist (born 1956)
condensed matter experimental physicist. He is best known for his work in spintronics in semiconductors. Awschalom graduated from the University of Illinois
David_Awschalom
Swiss physicist
the fabrication and properties of nanostructured materials as well as spintronics. Jean-Philippe Ansermet graduated from École Polytechnique Fédérale de
Jean-Philippe_Ansermet
Chinese-American physicist
physicist whose research topics have included the study of nanomaterials, spintronics, quantum sensors, and the application of synchrotron x-rays in materials
Xuemei_May_Cheng
Type of magnetic state
speculated that altermagnetism may have applications in the field of spintronics. In altermagnetic materials, atoms form a regular pattern with alternating
Altermagnetism
Point defect in diamonds
computing (e.g. for entanglement generation), quantum simulation, and spintronics. Natural NV centers are randomly oriented within a diamond crystal. Ion
Nitrogen-vacancy_center
Chemical compound
small electrical current. If it can be applied in digital devices, this spintronics behavior requires far less current than the conventional charge-based
Nickel(II)_iodide
Programmable machine that processes data
Theoretical/experimental Quantum computer IBM Q System One Chemical computer DNA computing Optical computer Spintronics-based computer Wetware/Organic computer
Computer
Chemical compound
at temperatures below 9.4 K. MoS2 has been found to reduce damping in spintronics. Molybdenum diselenide Haynes, William M., ed. (2011). CRC Handbook of
Molybdenum_disulfide
Chemical semiconductor compound
with a suitable transition metal such as manganese, GaN is a promising spintronics material (magnetic semiconductors). GaN crystals can be grown from a
Gallium_nitride
Electrical conductivity with exactly zero resistance
Linder, Jacob; Robinson, Jason W. A. (2 April 2015). "Superconducting spintronics". Nature Physics. 11 (4): 307–315. arXiv:1510.00713. Bibcode:2015NatPh
Superconductivity
British physicist
contributions to spintronics and data storage. Parkin was awarded the Charles Stark Draper Prize in 2024 for his "inventions in the field of spintronics". Parkin
Stuart_Parkin
Study of the production and behaviour of materials at very low temperatures
other items. Experimental research on certain physics phenomena, such as spintronics and magnetotransport properties, requires cryogenic temperatures for
Cryogenics
Engineering of quantum spin systems to develop devices and materials
and possible future applications of spintronics which make use of one or the combination of several basic spintronic phenomena: Hard disk drive read heads
Spin_engineering
American condensed matter physicist (1929–2021)
an American condensed matter physicist. He is known as a pioneer of spintronics and for his 1955 discovery of the eponymous Dresselhaus effect. Dresselhaus
Gene_Dresselhaus
Franco-Algerian physico-chemist (born 1964)
French-Algerian physical chemist who researches molecular materials and spintronics. He has worked on molecular materials for potential applications in memory
Azzedine_Bousseksou
Magnetic effect in insulators between ferromagnets
is a strictly quantum mechanical phenomenon, and lies in the study of spintronics. Magnetic tunnel junctions are manufactured in thin film technology.
Tunnel_magnetoresistance
Soviet-American theoretical physicist (1927–2025)
his contributions to different areas of condensed matter physics and spintronics, especially the Rashba effect in spin physics, and also for the prediction
Emmanuel_Rashba
Hexagonal lattice made of carbon atoms
ribbon scaling properties. Graphene is considered an ideal material for spintronics due to its minimal spin–orbit interaction, the near absence of nuclear
Graphene
Phenomenon involving the change of conductivity in metallic layers
the discovery of GMR, which also sets the foundation for the study of spintronics. The effect is observed as a significant change in the electrical resistance
Giant_magnetoresistance
Relativistic interaction in quantum physics
shift in their energy levels in the nuclear shell model. In the field of spintronics, spin–orbit effects for electrons in semiconductors and other materials
Spin–orbit_interaction
American physicist
nanostructures including nano-scale quantum electronics, superconductors, spintronics, and topological insulators. She is a professor of physics at the City
Lia_Krusin-Elbaum
Nonlinear two-terminal fundamental circuit element
trapping/detrapping on the localized states of oxygen vacancies and its impact on spintronics. This highlights the importance of understanding what role oxygen vacancies
Memristor
Type of topological solutions in non-linear sigma models
important in solid-state physics, especially in the emerging technology of spintronics. A two-dimensional magnetic skyrmion, as a topological object, is formed
Skyrmion
Research scientist and entrepreneur
interests center around magnetism and spin electronics, including spintronics phenomena, spintronic materials and applications, particularly memory (MRAM) devices
Bernard_Dieny
Type of functional semiconducting oxide
provide only ~50% polarization), which is an important property for spintronics applications, e.g. spin transistors. While many traditional magnetic
Magnetic_semiconductor
Polish physicist
University of Warsaw. His research interests include semiconductors, spintronics, and nanotechnology. With over 20,000 citations, he is considered a leading
Tomasz_Dietl
extensively in the areas of superconductivity, superconducting spintronics, spintronics, magnetism, quantum materials, and nanoelectronics. Particular
Jason_WA_Robinson
Dutch theoretical physicist
sub-fields of physics, such as magnetic skyrmion spintronics, antiferromagnetic spintronics, and cold-atom spintronics. Curriculum Vitae Institute For Theoretical
Rembert_Duine
Electromagnetic property of matter
Electric charge (symbol q, sometimes Q) is a physical property of matter that causes it to experience a force when placed in an electromagnetic field.
Electric_charge
Potential transistor-like device
field-effect transistor (spinFET), Datta–Das spin transistor or spintronic transistor (named for spintronics, the technology which this development spawned), originally
Spin_transistor
Chinese-American physicist (1963–2018)
topological insulators, the quantum Hall effect, the quantum spin Hall effect, spintronics, and high-temperature superconductivity. According to the National Academy
Shoucheng_Zhang
Spintronics-related effect
The Rashba–Edelstein effect (REE) is spintronic phenomenon in which a two-dimensional charge current generates a surface spin accumulation. This effect
Rashba–Edelstein_effect
Irish physicist (1945–2025)
Irish-born experimental physicist working in the fields of magnetism and spintronics. He was a professor at the Trinity College Dublin (TCD). Michael Coey
Michael_Coey
Momentum-dependent division of spin bands in two-dimensional condensed matter systems
orders of magnitude larger, in agreement with experimental observations. Spintronics - Electronic devices are based on the ability to manipulate the electrons
Rashba_effect
Intrinsic quantum property of particles
transistor. Electronics based on spin transistors are referred to as spintronics. The manipulation of spin in dilute magnetic semiconductor materials
Spin_(physics)
Elementary particle with negative charge
particles One-electron universe Periodic systems of small molecules Spintronics Stern–Gerlach experiment Townsend discharge Zeeman effect Positron or
Electron
Japanese physicist
Nanoelectronics and Spintronics at Tohoku University. From 2010 until March 2018, Ohno served as the director of the Center for Spintronics Integrated Systems
Hideo_Ohno
Croatian-American physicist
Zutic (born July 15, 1967) is a Croatian-American physicist, focusing on spintronics and spin-polarized transport, high temperature and unconventional superconductivity
Igor_Zutic
Jeffrey Allen Reimer is an American chemist, academic, author and researcher. He is the C. Judson King Endowed Professor, a Warren and Katharine Schlinger
Jeffrey_Reimer
Generation of spin current
Bibcode:2020Sci...368..160V. doi:10.1126/science.aaz4247. ISSN 0036-8075. PMID 32273462. S2CID 213395321. Spintronics Spin wave Spin Hall effect v t e
Spin_pumping
Class of materials
magnetic properties for spintronics applications. The spin gapless semiconductor is a promising candidate material for spintronics because its charged particles
Spin_gapless_semiconductor
Technology with features near one nanometer
discovery of giant magnetoresistance and contributions to the field of spintronics. Solid-state techniques can be used to create nanoelectromechanical systems
Nanotechnology
Structure (Visitor Section) Atomically Controlled Processing Semiconductor Spintronics Nano-Molecular Devices Nano-Spin Memory Real-World Computing Brain Architecture
Research Institute of Electronic Communication
Research_Institute_of_Electronic_Communication
Italian Physicist
principal investigator at AMBER Centre, where he leads the Computational Spintronics Group. Sanvito is one of the developers of Smeagol, a software for nanoscale
Stefano_Sanvito
Slice of semiconductor grown gradually atop a substrate itself
by epitaxial growth (epitaxy) for use in photonics, microelectronics, spintronics, or photovoltaics. The epi layer may be the same material as the substrate
Epitaxial_wafer
Public research institute
the absolute top R&D performers worldwide, especially in the fields of spintronics, structure analysis and crystallography, atomic and molecular structures
Institute of Physics of the Czech Academy of Sciences
Institute_of_Physics_of_the_Czech_Academy_of_Sciences
Romanian-American computer scientist
circuits and architecture, embedded systems, cyber-physical systems, spintronics, and nanoelectronics. Stan received his diploma in Electronics and Communications
Mircea_Stan_(professor)
Property of some chemical elements to exist in two or more different forms
Heisenberg – Facts Nobelprize.org "Meet Q-silicon, a new magnetic material for spintronic quantum computers". New Atlas. July 4, 2023. Raj, G. Advanced Inorganic
Allotropy
The silicon-vacancy center (Si-V) is an optically active defect in diamond (referred to as a color center) that is receiving an increasing amount of interest
Silicon-vacancy center in diamond
Silicon-vacancy_center_in_diamond
American electrical engineer
capacitor circuits, DRAM, SRAM, BiCMOS, x86 clocking, Photonics and spintronics. Born in Melbourne, Australia, Young received his bachelor's and master's
Ian_A._Young
degeneracy.[citation needed] Graphene is claimed to be an ideal material for spintronics due to its small spin–orbit interaction and the near absence of nuclear
Electronic properties of graphene
Electronic_properties_of_graphene
Chemical element with atomic number 72 (Hf)
manufacture. See hafnium controversy. Hafnium diselenide is studied in spintronics thanks to its charge density wave and superconductivity. Hafnium is a
Hafnium
Regular pattern of magnetic moment ordering
Stuart S. P.; Stiles, M. D. (March 2018). "Synthetic antiferromagnetic spintronics". Nature Physics. 14 (3): 217–219. Bibcode:2018NatPh..14..217D. doi:10
Antiferromagnetism
New technologies actively in development
on 29 February 2012. Retrieved 8 December 2011. "Scientists developing spintronic computer chips". The Times of India. 14 April 2011. Archived from the
List_of_emerging_technologies
Subfield of magnetism
waves for things such as 'magnonic' logic and data storage. Similarly, spintronics aims to utilize the inherent spin degree of freedom to complement the
Magnonics
Physical magneto-optical phenomenon
sensors) and for magneto-optical imaging. The Faraday effect is used in spintronics research to study the polarization of electron spins in semiconductors
Faraday_effect
Physicist (1955–2018)
bio-inspired information processing, synthesis of colloids and nanoparticles, spintronics and quantum computing, statistical mechanics, polymer science, and chemical
Vladimir_Privman
Description of the dynamics of magnetization in a solid
doi:10.1016/0304-8853(96)00062-5. Wolf, S. A. (16 November 2001). "Spintronics: A Spin-Based Electronics Vision for the Future". Science. 294 (5546):
Landau–Lifshitz–Gilbert equation
Landau–Lifshitz–Gilbert_equation
Half-metals have attracted some interest for their potential use in spintronics. In July 2025, researchers reported the first experimental realization
Half-metal
Recording of data on a magnetizable medium
strength of the magnetism from the platter. Later development made use of spintronics; in read heads, the magnetoresistive effect was much greater than in
Magnetic_storage
Type of computer memory
Atsufumi; Ohno, Hideo; Fukami, Shunsuke; Piramanayagam, S.N. (2017). "Spintronics based random access memory: a review". Materials Today. 20 (9): 530–548
Magnetoresistive_RAM
Observation on the growth of integrated circuit capacity
not rely on physical scaling. These include the spin state of electron spintronics, tunnel junctions, and advanced confinement of channel materials via
Moore's_law
information based on quantum states of individual photons or electrons (spintronics). Current topics also include the growth and characterization of nanowires
Paul_Drude_Institute
Professor of Functional Molecular Materials
of London). OCLC 930634406. EThOS uk.bl.ethos.252184. Fulford, Sima. "Spintronics solves puzzle of organic solar cells nanostructure | Imperial News |
Sandrine_Heutz
Company producing magnetoresistive random-access memory
Funds and Matrix Partners to pioneer non-volatile solutions based on spintronics. The company developed thin-film memory, which included the invention
Grandis,_Inc.
1922 physical experiment demonstrating that atomic spin is quantized
In quantum physics, the Stern–Gerlach experiment demonstrated that the spatial orientation of angular momentum is quantized. Thus an atomic-scale system
Stern–Gerlach_experiment
British materials scientist
materials, including complex oxides, oxide heterostructures, metallic spintronics, complex alloys, organic conductors, and photovoltaics. Leighton, Chris;
Chris_Leighton
context, resulting in key advances in semiconductor spintronics and, more recently, topological spintronics. Samarth's research is published in over 200 articles
Nitin_Samarth
Academic fields of study or professions
physics Thermodynamics Social physics Soil physics Solid state physics Spintronics Statics Fluid statics Statistical physics Surface physics Agrochemistry
Outline of academic disciplines
Outline_of_academic_disciplines
Ukrainian physicist
Spanish-Ukrainian physicist and materials scientist whose research interests include spintronics and the dynamics and multiscale modeling of magnetic materials and magnetic
Oksana_Chubykalo-Fesenko
Chemical compound
β-phase upon heating to 45 °C (113 °F). MnAs has potential applications in spintronics, for electrical spin injection into GaAs and Si based devices. Ido, H
Manganese_arsenide
Research institute in Germany
materials with useful functionalities. Active research topics includes spintronics, neuromorphic systems, superconductivity, nano-photonics, topological
Max Planck Institute of Microstructure Physics
Max_Planck_Institute_of_Microstructure_Physics
scientist studying advanced materials synthesis and characterisation and spintronics. He is a University of Wollongong professor, and director of its Institute
Xiaolin_Wang
Chemical element with atomic number 32 (Ge)
chlorine and sulfur. Germanium is emerging as an important material for spintronics and spin-based quantum computing applications. In 2010, researchers demonstrated
Germanium
Elements with atomic numbers 57-70
low temperatures, and is a semiconductor with possible applications in spintronics. A mixed EuII/EuIII oxide Eu3O4 can be produced by reducing Eu2O3 in
Lanthanide
Branch of physics
proposed in condensed matter physics, including Josephson junction qubits, spintronic qubits using the spin orientation of magnetic materials, and the topological
Condensed_matter_physics
Research of materials
also includes new areas of research such as superconducting materials, spintronics, metamaterials, etc. The study of these materials involves knowledge
Materials_science
physics) (electric and magnetic fields in matter) (quantum electronics) (spintronics) Gibbons–Hawking effect (general relativity) Gibbs–Donnan effect (biology)
List_of_effects
University of Duisburg-Essen "Let’s TWIST Again: Topological Whirls In SpinTronics" Magnetism 2024 Loughborough 2023 Chiara Ciccarelli University of Cambridge
Wohlfarth_Lectureship
Chemical compounds containing a lanthanide element
low temperatures, and is a semiconductor with possible applications in spintronics. A mixed EuII/EuIII oxide Eu3O4 can be produced by reducing Eu2O3 in
Lanthanide_compounds
Set of documents
is on devices that provide electronics but aren’t CMOS based, such as spintronics, memristors, and others. More Moore Because there is still work to be
International Technology Roadmap for Semiconductors
International_Technology_Roadmap_for_Semiconductors
American electrical engineer and materials scientist
electron spin filter, was based on research applying magnetic materials in spintronics. She became a postdoctoral researcher and then staff scientist at the
Tiffany_Santos
French Physicist working on Oxide Spintronics
physicist specializing in functional oxides, multiferroic materials, and spintronics. He is currently a Research Director at the National Center for Scientific
Manuel_Bibes
can preserve electron spin over an extended period and communicate it. Spintronics varies electron spin rather than current flow. The spin signal is preserved
Potential applications of graphene
Potential_applications_of_graphene
Materials with electrical properties that cannot be explained by non-interacting entities
class which may be subdivided according to their behavior, e.g. high-Tc, spintronic materials, multiferroics, Mott insulators, spin Peierls materials, heavy
Strongly_correlated_material
Physical magnetic effect
Memristor Spintronics Bhatti, Sabpreet; Sbiaa, Rachid; Hirohata, Atsufumi; Ohno, Hideo; Fukami, Shunsuke; Piramanayagam, S.N (2017). "Spintronics based random
Spin-transfer_torque
Integrated circuit technology
Neuromorphic systems employ hardware such as oxide-based memristors, spintronic memories, threshold switches, and transistors. Software implementations
Neuromorphic_computing
Chemical compound
a mixture of the two phases. Cobalt green has been tested for use in "spintronic" devices. Cobalt green is attractive in this application because it is
Cobalt_green
SPINTRONICS
SPINTRONICS
SPINTRONICS
SPINTRONICS
Boy/Male
Muslim
Perfect
Male
English
Variant spelling of English unisex Kody, KODEY means "helper."
Male
French
Variant spelling of Norman French Herluin, ARLUIN means "noble friend" or "noble warrior."
Boy/Male
Indian
The Sun (Son of Aditi)
Girl/Female
African, American, Arabic, Assamese, Christian, Danish, English, Farsi, Finnish, French, German, Gujarati, Hindu, Indian, Kannada, Malayalam, Marathi, Muslim, Punjabi, Sikh, Sindhi, Swedish, Tamil, Telugu
A Flower Name; God's Gift; A Flower Name from the Older Form Jessamine; Jasmime Flower; A Plant in the Olive Family; Fragrant Flower
Boy/Male
American, Australian, British, English, Scottish, Teutonic
From the Island of the Lime Tree
Surname or Lastname
English
English : habitational name from Plush in Dorset, originally named with an Old English word plysc ‘shallow pool’.
Girl/Female
American, Australian, British, Christian, Dutch, English, French, German, Hebrew, Japanese, Latin
A Combination of Mary and Ann; Bitter; Sea of Bitterness; Rebelliousness; Wished for Child; Of the Clan Marius
Boy/Male
Tamil
Krishna Murari | கரஷà¯à®£à®®à¯à®°à®¾à®°à¯€
Lord Krishna
Boy/Male
Indian
Fragrance, The Sun
SPINTRONICS
SPINTRONICS
SPINTRONICS
SPINTRONICS
SPINTRONICS