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Condensed matter physics is the field of physics that deals with the macroscopic and microscopic physical properties of matter, especially the solid and liquid phases, that arise from electromagnetic forces between atoms and electrons. More generally, the subject deals with condensed phases of matter: systems of many constituents with strong interactions among them.... Wikipedia
Conferences
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5th International Conference on Condensed Matter & Applied Physics December 12-15, 2025 Bikaner (India)
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International Experts Summit on Condensed Matter Physics and Quantum Materials May 26-28, 2025 Valencia, Spain
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International Conference on Theoretical and Condensed Matter Physics 1st - 2nd September 2025 Las vegas, USA
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International Conference on Theoretical and Condensed Matter Physics 23rd - 24th June 2025 Warsaw, Poland
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Global Conference on Magnetism, Magnetic Materials and Spintronic May 21-23, 2025 London, UK
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The 70th Annual Conference on Magnetism and Magnetic Materials October 27-31, 2025 West Palm Beach, Florida, USA
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IEEE International Magnetics Conference 13 – 17 April 2026 Manchester, UK
Books
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Journals
Referred Articles
Article | DOI |
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Orbitronics: light-induced orbital currents in Ni studied by terahertz emission experiments | link |
Designing light-element materials with large effective spin-orbit coupling | link |
Orbital torque in magnetic bilayers | link |
Anisotropic spin-orbit torque generation in epitaxial SrIrO₃ by symmetry design | link |
Switching of perpendicularly polarized nanomagnets with spin orbit torque without an external magnetic field by engineering a tilted anisotropy | link |
Field-free spin-orbit torque switching assisted by in-plane unconventional spin torque in ultrathin [Pt/Co]N | link |
Nanowire spin torque oscillator driven by spin orbit torques | link |
Giant spin-orbit torque induced by spin Hall effect in amorphous Pt(P) alloys | link |
Robust spin-orbit torque and spin-galvanic effect at the Fe/GaAs (001) interface at room temperature | link |
Harnessing orbital Hall effect in spin-orbit torque MRAM | link |
Spin-Orbit Torque Switching of Magnetization in Ultra-Thick Ferromagnetic Layers | link |
High-Density NAND-Like Spin Transfer Torque Memory With Spin Orbit Torque Erase Operation | link |
Thermal spin–orbit torque with Dresselhaus spin–orbit coupling | link |
Electrically Reconfigurable 3D Spin-Orbitronics | link |
Orbitronics for energy-efficient magnetization switching | link |
Ferroelectric Control of Spin-Orbitronics | link |
Orbitronics: Mechanisms, Materials and Devices | link |
Rare-Earth Permanent Magnet SmCo5 for Chiral Interfacial Spin-Orbitronics | link |
Playing Pure Spin Current in Helimagnets: Toward Chiral Spin-Orbitronics | link |
The Chiral Spin-Orbitronics of a Helimagnet–Normal Metal Heterojunction | link |
Electrical switching of magnetic order in an orbital Chern insulator | link |
Giant orbital magnetoelectric effect and current-induced magnetization switching in twisted bilayer graphene | link |
Orbital torque switching in perpendicularly magnetized materials | link |
Giant Orbital Hall Effect in Transition Metals: Origin of Large Spin and Anomalous Hall Effects | link |
Orbital Hall effect as an alternative to valley Hall effect in gapped graphene | link |
Intrinsic spin Hall effect and orbital Hall effect in4dand5dtransition metals | link |
Orbit-orbit interaction and photonic orbital Hall effect in reflection of a light beam | link |
Inverse orbital Hall effect and orbitronic terahertz emission observed in the materials with weak spin-orbit coupling | link |
Effect of the inversion symmetry breaking on the orbital Hall effect: A model study | link |
Giant orbital Hall effect and orbital-to-spin conversion in 3d , 5d , and 4f metallic heterostructures | link |
Observation of the orbital Hall effect in a light metal Ti | link |
Experimental Observation of the Spin-Hall Effect in a Two-Dimensional Spin-Orbit Coupled Semiconductor System | link |
Magneto-Optical Detection of the Orbital Hall Effect in Chromium | link |
Quantum Spin Hall Effect and Enhanced Magnetic Response by Spin-Orbit Coupling | link |
Spin-orbit Hall effect in the tight focusing of a radially polarized vortex beam | link |
Orbital Hall effect in crystals: Interatomic versus intra-atomic contributions | link |
Connecting Higher-Order Topology with the Orbital Hall Effect in Monolayers of Transition Metal Dichalcogenides | link |
Orbital Ferromagnetism and Anomalous Hall Effect in Antiferromagnets on the Distorted fcc Lattice | link |
Negative intrinsic orbital Hall effect in group XIV materials | link |
Spin-Orbit Optical Hall Effect | link |
A conductive topological insulator with large spin Hall effect for ultralow power spin–orbit torque switching | link |
Quantum Hall effect based on Weyl orbits in Cd3As2 | link |
Geometrical Optics of Beams with Vortices: Berry Phase and Orbital Angular Momentum Hall Effect | link |
Graphene with structure-induced spin-orbit coupling: Spin-polarized states, spin zero modes, and quantum Hall effect | link |
Novel Magnetic‐Field‐Free Switching Behavior in vdW‐Magnet/Oxide Heterostructure | link |
Microwave Switching in the Magnetic and Elastic Subsystems of a Three-Layer Magnetic Structure | link |
Neuromorphic Computing in Synthetic Antiferromagnets by Spin‐Orbit Torque Induced Magnetic‐Field‐Free Magnetization Switching | link |
Field‐Free Switching of Magnetization by Tilting the Perpendicular Magnetic Anisotropy of Gd/Co Multilayers | link |
X-ray Magnetic Circular Dichroism Investigation of the Electron Transfer Phenomena Responsible for Magnetic Switching in a Cyanide-Bridged [CoFe] Chain | link |
Non-volatile multi-level magnetic states switching in a geometrically frustrated Tb0.95Mn1.5Co0.5 compound | link |
Magnetic Switching of FSF Bridges at Low Temperatures | link |
Magnetic phase transition and continuous spin switching in a high-entropy orthoferrite single crysta | link |
Electrical switching of magnetic order in an orbital Chern insulator | link |
Polarization Switching of a Rochelle Salt Single Crystal in a Magnetic Field | link |
Carbon-based Biradicals: Structural and Magnetic Switching | link |
Two Magnetic Switching Complexes Based on the FeII Ion | link |
Soft Magnetic Switching in a FeSr2YCu2O7.85 Superconductor with Unusually High Iron Valence | link |
Current-Induced Switching of Perpendicularly Magnetized Magnetic Layers Using Spin Torque from the Spin Hall Effect | link |
Molecular Thin Films: A New Type of Magnetic Switch | link |
A three-terminal spin-torque-driven magnetic switch | link |
Spintronics meets orbitronics: Emergence of orbital angular momentum in solids | link |
Sub-nanosecond in-plane magnetization switching induced by field-like spin-orbit torques from ferromagnets | link |
Orbitronics: Orbital currents in solids | link |
Spin–orbit coupling of spin‐frustrated systems | link |
DFTB Parameters for the Periodic Table: Part III, Spin-Orbit Coupling | link |
Ultrathin two-dimensional superconductivity with strong spin–orbit coupling | link |
Nanoscale chiral valley-photon interface through optical spin-orbit coupling | link |
Realization of two-dimensional spin-orbit coupling for Bose-Einstein condensates | link |
Atomic-scale control of magnetic anisotropy via novel spin–orbit coupling effect in La2/3Sr1/3MnO₃/SrIrO₃ superlattices | link |
Observation of the orbital Hall effect in a light metal Ti | link |
Orbital angular momentum control of strong-field ionization in atoms and molecules | link |
Spin-transfer torque magnetic random access memory (STT-MRAM) | link |
Recent progress in spin-orbit torque magnetic random-access memory | link |
Recent progress on controlling spin-orbit torques by materials design | link |
Harnessing orbital Hall effect in spin-orbit torque MRAM | link |
Spin transfer torque (STT)-MRAM--based runtime reconfiguration FPGA circuit | link |
Enhancing spin-transfer torque in magnetic tunnel junction devices: Exploring the influence of capping layer materials and thickness on device characteristics | link |
Oxygen vacancy-driven spin-transfer torque across MgO magnetic tunnel junctions | link |
Advances and Future Prospects of Spin-Transfer TorqueRandom Access Memory | link |
Demonstration of spin transfer torque (STT) magnetic recording | link |
The 15th Joint Magnetism and Magnetic Materials–Intermag Conference | link |
On the current-induced domain-wall dynamics | link |
Observation of long-range orbital transport and giant orbital torque | link |
Spin orbit coupling effect on coherent transport properties of graphene nanoscopic rings in external magnetic field | link |
Electric field manipulation enhanced by strong spin-orbit coupling: promoting rare-earth ions as qubits | link |
Layer- and gate-tunable spin-orbit coupling in a high-mobility few-layer semiconductor | link |
Tuning the interplay of spin-orbit coupling and trigonal crystal-field effect in the Ising-like spin system Ca3Co2O6 | link |
Variation of spin–orbit coupling and related properties in skyrmionic system Mn FexGe | link |
The orbital angular momentum of a turbulent atmosphere and its impact on propagating structured light fields | link |
Scattering Field Intensity and Orbital Angular Momentum Spectral Distribution of Vortex Electromagnetic Beams Scattered by Electrically Large Targets Comprising Different Materials | link |
On the Orbital Angular Momentum Incident Fields in Linearized Microwave Imaging | link |
Orbital angular momentum of light for communications | link |
Revolutionizing Technology with Spintronics: Devices and Their Transformative Applications | link |
Spin Transfer Torques | link |
Impact of Spin-Orbit Torque on Spin-Transfer Torque Switching in Magnetic Tunnel Junctions | link |
Sign Reversal of Spin-Transfer Torques | link |
Introduction to spin transfer torque | link |
Spin transfer torque driven higher-order propagating spin waves in nano-contact magnetic tunnel junctions | link |
Spin transfer torque bias (STTB) due to domain wall resistance in an infinitely long ferromagnetic nanowire | link |
A Review of Orbital Angular Momentum Vortex Waves for the Next Generation Wireless Communications | link |
Spin transfer torque and field driven 360° domain wall to bimeron conversion | link |
Prospect of Spin-Orbitronic Devices and Their Applications | link |
Condensed matter physics under pressure | link |
Low temperature facilities for condensed matter research | link |
Recent advances in selected nanostructured electroactive materials for electrochemical water splitting | link |
Influence of particle size on the magnetism of magnetite and the development of an energy-efficient three-product magnetic separator | link |
The dynamics of the spin–spin problem in Celestial Mechanics | link |
Dynamics of current-driven spin waves in a confined track | link |
Structural Effects on the Spin Dynamics of Potential Molecular Qubits | link |
Spin currents and spin superfluidity | link |
Transverse spin dynamics in structured electromagnetic guided waves | link |
Quantum magnonics: When magnon spintronics meets quantum information science | link |
Parallel pumping for magnon spintronics: Amplification and manipulation of magnon spin currents on the micron-scale | link |
Observation of the Magnon Hall Effect | link |
Application of magnon coherent states in spintronics | link |
Spin-polarised currents and magnetic domain walls | link |
Multiscale studies of complex magnetism of nanostructures based on first principles | link |
Magnetization switching by magnon-mediated spin torque through an antiferromagnetic insulator | link |
Fundamentals and applications of van der Waals magnets in magnon spintronics | link |
Current-Induced Spin-Wave Doppler Shift | link |
Single-shot magnon interference in a magnon-superconducting-resonator hybrid circuit | link |
Recent Trends
Quantum Material & Exotic Phenomena|Nonlinear Hall Effects| Extraordinary Hall Effect and Applications| Spintronic Sensors|
SOT-MRAM|Tunable Spin-Orbit Coupling| Simulating Spin-Orbit Coupling| Spin-Charge Interconversion|
Spin-Orbit Torque for Energy Efficiency| Ultrafast Laser-Induced Spin Currents| Organic Spintronics|Multifunctional Spintronic Materials|
Internet/Blogs
Title | Access |
---|---|
Byjus | link |
NEXT IAS | link |
The Division of Condensed Matter Physics | link |
Experimental Condensed Matter Physics | link |
Condensed Matter Physics | link |
Non-equilibrium orbital angular momentum for orbitronics | link |
On the Road to Spin-orbitronics | link |
Scientists Discover Quantum Object That Could Revolutionize Computing. Say Hello To Orbitronics | link |
Hall Effect Definition, Principle, Formula & Applications | link |
In-plane magnetic fields reveal new Hall effect behaviors in advanced materials | link |
Hall Effect | link |
Hall-Effect Sensors Applications Guide | link |
Relativistic spin-orbit coupling may lead to unconventional superconductivity type | link |
Spin Orbit Coupling in Periodically Driven Optical Lattices | link |
Robust detection technology of orbital angular momentum of partially coherent vortex light fields in complex environment | link |
Recent trends in Condensed Matter Physics related to Quantum Materials,2024 | link |
Bayesian Reasoning Enabled by Spin-Orbit Torque Magnetic Tunnel Junctions | link |
Identifying Switching of Antiferromagnets by Spin-Orbit Torques | link |
Anisotropic manipulation of terahertz spin-waves by spinorbit torque in a canted antiferromagnet | link |
Vanadium Doped Magnetic MoS2 Monolayers of Improved Electrical Conductivity as Spin-Orbit Torque Layer | link |
Field-free spin-orbit switching of canted magnetization in | link |
Energy-efficient field-free unconventional spin-orbit torque magnetization switching dynamics in van der Waals heterostructures | link |
Both orbital and spin torques originate from r×g | link |
Harnessing Orbital Hall Effect in Spin-Orbit Torque MRAM | link |
Energy-efficient picosecond spin-orbit torque magnetization switching in ferro and ferrimagnetic films | link |
Reconciling Kubo and Keldysh Approaches to Fermi-Sea-Dependent Nonequilibrium Observables: Application to Spin Hall Current and Spin-Orbit Torque in Spintronics | link |
Topologically Driven Spin-Orbit Torque in Dirac Matter | link |
Initialization-Free Multistate Memristor: Synergy of Spin-Orbit Torque and Magnetic Fields | link |
Orbital torque switching in perpendicularly magnetized materials | link |
Spin Orbit Torque on a Curved Surface | link |
Self-generated spin-orbit torque driven by anomalous Hall current | link |
Spin-orbit torque emerging from orbital textures in centrosymmetric materials | link |
Effects of spin–orbit coupling and in-plane Zeeman fields on the critical current in two-dimensional hole gas SNS junctions | link |
Orbitronics in Two-dimensional Materials | link |