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First Measurement of the Ar$(e,e^\prime)X$ Cross Section at Jefferson Lab

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arxiv 1810.10575 v2 pith:5XHS7NOS submitted 2018-10-24 nucl-ex hep-exnucl-th

classification nucl-exhep-exnucl-th
keywords argoncrossscatteringelectronenergyjeffersonnucleusprime
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The success of the ambitious programs of both long- and short-baseline neutrino-oscillation experiments employing liquid-argon time-projection chambers will greatly rely on the precision with which the weak response of the argon nucleus can be estimated. In the E12-14-012 experiment at Jefferson Lab Hall A, we have studied the properties of the argon nucleus by scattering a high-quality electron beam off a high-pressure gaseous argon target. Here, we present the measured $^{40}$Ar$(e,e^{\prime})$ double differential cross section at incident electron energy $E=2.222$~GeV and scattering angle $\theta = 15.541^\circ$. The data cover a broad range of energy transfers, where quasielastic scattering and delta production are the dominant reaction mechanisms. The result for argon is compared to our previously reported cross sections for titanium and carbon, obtained in the same kinematical setup.

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