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"Interaction-free" discrimination between semi-transparent objects

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arxiv quant-ph/0003140 v2 pith:7PHTIBCP submitted 2000-03-30 quant-ph

classification quant-ph
keywords particleobjectprobabilitiesamplitudeinequalityinteraction-freeknownobjects
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abstract

Absorption-free (also known as ``interaction-free'') measurement aims to detect the presence of an opaque object using a test particle without that particle being absorbed by the object. Here we consider semi-transparent objects which have an amplitude $\alpha$ of transmitting a particle while leaving the state of the object unchanged and an amplitude $\beta$ of absorbing the particle. The task is to devise a protocol that can decide which of two known transmission amplitudes is present while ensuring that no particle interacts with the object. We show that the probabilities of being able to achieve this are limited by an inequality. This inequality implies that absorption free distinction between complete transparency and any partial transparency is always possible with probabilities approaching 1, but that two partial transparencies can only be distinguished with probabilities less than 1.

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  1. Counterfactual Quantum Sensing: What Interaction-Free Measurement Can and Cannot Buy

    quant-ph 2026-07 conditional novelty 5.0 of 10

    Interaction-free interferometry carries half the Fisher information of direct probing for transmissivity, equal information per absorbed photon, and only beats direct schemes when distinguishing an object from empty s...

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