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From the 1 of 8 linked papers with an AI index.

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8 papers

cond-mat.mes-hall2026

Anderson Orthogonality as Measurement Backaction in Coupled Quantum Dots

Will Grant, Sarath Sankar, Elena Cornick +9

Measurement perturbs a quantum system by coupling it to external degrees of freedom, but detector backaction depends on the physical mechanism of measurement itself. In solid-state…

cond-mat.mes-hall2026

Entropic signatures of the single-impurity Kondo state

Johann Drayne, Silvia Lüscher, Will Grant +8

The paper reports a thermodynamic measurement of the entropy reduction that occurs when a Kondo singlet forms in a strongly coupled GaAs quantum dot, using temperature‑dependent ch…

cond-mat.mes-hall2026

Remote entropy measurement in coupled quantum dots

Owen Sheekey, Tim Child, Elena Cornick +8

Recent experiments have demonstrated that measurements of the entropy change associated with the addition of electrons to semiconductor- and graphene-based quantum dots accurately…

cond-mat.mes-hall2026

Quantum higher-spin Hall insulators

Takuto Kawakami, Igor Kuzmenko, Yshai Avishai +2

We develop a theory of quantum spin Hall insulators with arbitrary spin . Our analysis demonstrates that such systems support pairs of helical edge modes protec…

cond-mat.mes-hall2025

Realizing the interacting resonant level model using a quantum dot detector

Zhanyu Ma, Matan Lotem, Yigal Meir +1

The interacting resonant level model (IRLM) is the simplest quantum impurity model to display strongly correlated effects in mesoscopic systems, which triggered its extensive theor…

cond-mat.mes-hall2025

Direct signatures of Anderson orthogonality catastrophe in nonequilibrium quantum dots

Sarath Sankar, Joshua Folk, Yigal Meir +1

We propose schemes for unambiguous direct observation of Anderson orthogonality catastrophe (AOC) effects in a quantum dot coupled to a charge detector, allowing to estimate the AO…