Graphene measurements reveal energy-loss and quantum-coherence exponents diverge under gate control
Scientists have shown that the two exponents (inelastic scattering exponent and dephasing exponent) commonly used to describe electron scattering in graphene do not necessarily follow the same behavior. Using gated epitaxial graphene, a…
Phys.org Quantum Physics
Publisher
Sep 23, 2026 at 9:20 PM UTC · 1 min de lectura

Scientists have shown that the two exponents (inelastic scattering exponent and dephasing exponent) commonly used to describe electron scattering in graphene do not necessarily follow the same behavior. Using gated epitaxial graphene, a multi-institutional team of researchers independently extracted the two exponents through current-heating measurements and weak-localization analysis. The contrasting gate-voltage dependence provides evidence that energy relaxation and loss of quantum phase coherence can be governed by different microscopic processes.
Sourced by
Originally reported by Phys.org Quantum Physics
NewsLayer coverage based on externally reported material.
The Daily Brief
The onchain economy, before your day starts.
Curated markets, onchain insights, and key headlines — delivered every weekday morning.
Weekdays · Free · ~5 minute read
0
Applause
Was this article helpful?
Article Intelligence
Related Coverage
Sponsored
AdNewsLayer Premium
Unlock deeper intelligence.
Ad-free reading, exclusive research, and real-time onchain insights.
Go Premium



