paper

Macroscopic Single-Qubit Operation for Coherent Photons

arXiv:2304.00013 · doi:10.1016/j.rinp.2024.107567

Abstract

Polarisation is described by an wavefunction due to macroscopic coherence of photons emitted from a ubiquitous laser source, and thus, a laser pulse is expected to behave as a macroscopic quantum bit (qubit), i.e., a qubit realised by a macroscopic number of photons. Here, we show that an arbitrary single-qubit operation can be carried out for such a macroscopic qubit by employing optical modulators, together with standard optical plates, in a computer-controlled fibre-optic configuration. We named the device as a Poincaré rotator, which allows a dynamic control over a polarisation state by executing an arbitrary amount of rotations on the Poincaré sphere. The Poincaré rotator works as an arbitrary operator in a Lie group, by combining a operation to change the phase and another operation to change the amplitude of the wavefunction. We have realised various polarisation states, such as , , and distinguishable states on the sphere. As a locus of the realised polarisation states on the sphere, we have successfully drawn the molecular structure of Buckminsterfullerene (C) and the coastline of the earth.

References in corpus (7)

Cited by in corpus (1)