Search results: spin hall effect

An additional contribution to the spin Hall effect induced by an electric current

An additional contribution to the spin Hall effect induced by an electric current

Condensed matterMaterialsPhysicsTheoretical physics

By DIPC

The interactions between moving charges and magnetic fields can be quite complicated; more if we consider the quantum effects. One example is the collection of Hall effects. Imagine that we have a conductor or a semiconductor through which a current is flowing. Then we apply a strong transverse magnetic field. As a result, we can […]

Impurities and spin Hall effects in graphene

Impurities and spin Hall effects in graphene

Condensed matterMaterialsPhysicsQuantum physics

By DIPC

The interactions between moving charges and magnetic fields can be quite complicated; more if we consider the quantum effects. One example is the collection of Hall effects. There are analogues of these effects for spin and the detection of the most sophisticated one in graphene, where, at least, it should not be strong, is something […]

Scaling the Hong–Ou–Mandel effect to ten-atom interference

Scaling the Hong–Ou–Mandel effect to ten-atom interference

Computer scienceDIPC Quantum SystemsQuantum physics

By DIPC

Over a century ago, quantum physics revealed a surprising fact: truly identical particles do not behave like tiny billiard balls. When two indistinguishable particles meet under the right conditions, they can interfere with each other in ways that have no classical explanation. One of the most famous demonstrations of this phenomenon is the Hong–Ou–Mandel effect […]

Chiral altermagnets and the unexpected origins of spin currents

Chiral altermagnets and the unexpected origins of spin currents

Condensed matterDIPC Advanced materialsMaterialsQuantum physics

By DIPC

Every time a computer processes information, electrons shuttle through circuits carrying electric charge, and much of the energy they carry is wasted as heat. Spintronics proposes a different approach: instead of relying solely on the charge of electrons, exploit another of their properties called spin, a quantum-mechanical quantity that can be thought of as a […]

The silicon advantage: How semiconductor manufacturing aims to solve the quantum computing scaling challenge

The silicon advantage: How semiconductor manufacturing aims to solve the quantum computing scaling challenge

Computer scienceMaterials

By Invited Researcher

The material at the heart of the digital revolution, silicon, is now a leading candidate for building large-scale quantum computers. This strategy leverages the most mature and powerful manufacturing technology on Earth to control the fundamental quantum property of an electron: its spin. Recent breakthroughs in silicon-based spin qubits have demonstrated gate fidelities that meet […]

How charge and spin interact in any diffusive system with SOC

How charge and spin interact in any diffusive system with SOC

Condensed matterDIPC Advanced materials

By DIPC

Imagine electrons as tiny particles zipping through a material, each carrying two key properties: charge, which powers our everyday electronics, and spin, like a little internal compass needle that points up or down. Charge flow is what we call electric current, but spin adds a magnetic twist, opening doors to advanced technologies like more efficient […]

Tuning spin and charge in graphene nanoribbons with atomic precision

Tuning spin and charge in graphene nanoribbons with atomic precision

Condensed matterDIPC Electronic PropertiesMaterialsQuantum physics

By DIPC

Graphene—a single layer of carbon atoms arranged in a honeycomb lattice—has captivated scientists because of its extraordinary electronic and mechanical properties. Its electrons move through the lattice almost as if they were massless, giving graphene exceptionally high electrical conductivity and mobility. However, pristine graphene sheets are not magnetic and their electrons are delocalized across the […]

Quantum and relativistic effects unified in electron spin-lattice interactions

Quantum and relativistic effects unified in electron spin-lattice interactions

Condensed matterQuantum physics

By Mapping Ignorance

“God does not play dice.” This famous remark by Albert Einstein critiqued the probabilistic nature of quantum mechanics. Paradoxically, his theory of relativity has become an essential tool for understanding the behaviour of electrons, the primary subjects of quantum mechanics. Electrons are so minuscule that their behaviour must be analysed through quantum mechanics, yet they […]