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Soft Matter and Biological Physics

EPJ A Highlight - Dissecting Deuteron Compton Scattering I: The Observables with Polarised Initial States

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Sensitivity of a double-polarisation-asymmetry observable to the E1-M2 spin polarisability.

The electromagnetic polarisabilities of the nucleons characterise their responses to external fields. The simplest are the electric and magnetic polarisabilities that describe the induced dipole moments. For spin-1/2 particles there are also four spin polarisabilities, analogous to rotations of the polarisation of light by optically active media. The best experimental window on them is Compton scattering of photons, which has provided good determinations of the electric and magnetic polarisabilities of the proton. Future experiments with polarised protons will give access to its spin polarisabilities. In contrast, much less is known of about the neutron since it does not exist as a stable target. Nonetheless, its properties can be obtained from Compton scattering on light nuclei, most notably the deuteron -- a weakly bound proton and neutron. A new generation of experiments is planned to provide beams of polarised photons on targets of polarised deuterons. If the spins of the final particles are not observed, there are 18 independent observables. This work provides, for the first time, the complete set of these, which will be needed for the experimental analyses. More importantly, it also examines their sensitivities to the various polarisabilities, which will be crucial for the design of the experiments.

Dissecting Deuteron Compton Scattering I: The Observables with Polarised Initial States, H. Griesshammer (2013), European Physical Journal A 49:100, DOI 10.1140/epja/i2013-13100-2

Editors-in-Chief
F. Croccolo, G. Fragneto and H. Stark
Thank you for the update. I appreciate the professionalism of the process, and the very pleasant way in which it was conducted.

Yeshayahu (Ishi) Talmon, Technion-Israel Institute of Technology, Haifa, Israel

ISSN (Print Edition): 2429-5299
ISSN (Electronic Edition): 2725-3090

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