← all papers · overview

Single Qubit Measurements With An Asymmetric Single-electron Transistor

Abstract

We investigate qubit measurements using a single electron transistor (SET). Applying the Schr\"odinger equation to the entire system we find that an asymmetric SET is considerably more efficient than a symmetric SET. The asymmetric SET becomes close to an ideal detector in the large asymmetry limit. We also compared the SET detector with a point-contact detector. This comparison allows us to illuminate the relation between information gain in the measurement process and the decoherence generated by these measurement devices.

Related papers

Ranked by semantic similarity — how closely each paper's abstract matches this one (100% = near-identical topic).