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Large liquid xenon detectors aiming for dark matter direct detection will soon become viable tools also for investigating neutrino physics. Information on the effects of nuclear structure in neutrino-nucleus scattering can be important in…

Nuclear Theory · Physics 2018-04-25 Pekka Pirinen , Jouni Suhonen , Emanuel Ydrefors

We present a new global QCD analysis of nuclear parton distribution functions. In addition to the most commonly analyzed data sets for deep inelastic scattering of charged leptons off nuclei and Drell Yan di-lepton production, we include…

High Energy Physics - Phenomenology · Physics 2012-04-18 Daniel de Florian , Rodolfo Sassot , Marco Stratmann , Pia Zurita

After the EMC and subsequent experiments at CERN, SLAC and DESY on the deep inelastic scattering of polarized leptons on polarized nucleons, it is now established that the Q^2=0 value of the axial strange form factor of the nucleon, a…

High Energy Physics - Phenomenology · Physics 2009-11-07 W. M. Alberico , S. M. Bilenky , C. Maieron

High-precision measurements in neutrino oscillation experiments require a very accurate description of the lepton-nucleus scattering process. Several cross-section calculations are available, but important discrepancies are still present…

Nuclear Theory · Physics 2024-01-12 Valerio Belocchi , Maria Benedetta Barbaro , Arturo De Pace , Marco Martini

Progress in neutrino-nucleus cross section models is being driven by the need for highly accurate predictions for the neutrino oscillation community. These sophisticated models are being developed within a microscopic description of the…

Nuclear Theory · Physics 2023-08-31 Minerba Betancourt , Steven Gardiner , Noemi Rocco , Noah Steinberg

A new structure function analysis of CCFR deep inelastic nu-N and nubar-N scattering data is presented for previously unexplored kinematic regions down to Bjorken x=0.0045 and Q^2=0.3 GeV^2. Comparisons to charged lepton scattering data…

High Energy Physics - Experiment · Physics 2007-05-23 NuTeV Collaboration , B. T. Fleming

We have made a thorough investigation of the nuclear structure function W_2A in the region of 0.8 < x < 1.5 and Q^2 < 20 GeV^2, separating the quasielastic and inelastic plus deep inelastic contributions. The agreement with present…

Nuclear Theory · Physics 2009-10-30 E. Marco , E. Oset

CEBAF experiment e89-008 measured inclusive electron scattering from nuclei in a Q^2 range between 0.8 and 7.3 (GeV/c)^2 for x_{Bjorken} \gtorder 1. The cross sections for scattering from D, C, Fe, and Au were measured. The C, Fe, and Au…

Nuclear Experiment · Physics 2007-05-23 John R. Arrington

We use a recent scaling analysis of the quasielastic electron scattering data from $^{12}$C to predict the quasielastic charge-changing neutrino scattering cross sections within an uncertainty band. We use a scaling function extracted from…

Nuclear Theory · Physics 2018-06-13 I. Ruiz Simo , V. L. Martinez-Consentino , J. E. Amaro , E. Ruiz Arriola

Preliminary results for the neutrino-nucleon differential cross section from the NuTeV experiment are presented. The extraction of the differential cross section from NuTeV is discussed and the structure functions $F_2$ and $\Delta xF_3$…

High Energy Physics - Experiment · Physics 2019-08-14 J. McDonald

Quasielastic neutrino-nucleon scattering is a basic signal process for neutrino oscillation studies. At accelerator energies, the corresponding cross section is subject to significant uncertainty due to the poorly constrained axial-vector…

High Energy Physics - Phenomenology · Physics 2013-05-29 Bhubanjyoti Bhattacharya , Richard J. Hill , Gil Paz

This study presents a comprehensive model for neutrino deep inelastic scattering (DIS) cross sections spanning energies from 50 GeV to 5$\times10^{12}$ GeV with an emphasis on applications to neutrino telescopes. We provide calculations of…

High Energy Physics - Phenomenology · Physics 2024-08-13 Philip L. R. Weigel , Janet M. Conrad , Alfonso Garcia-Soto

We have isolated muon anti-neutrino charged-current quasi-elastic interactions occurring in the segmented scintillator tracking region of the MINERvA detector running in the NuMI neutrino beam at Fermilab. We measure the flux-averaged…

High Energy Physics - Experiment · Physics 2014-11-25 The MINERvA collaboration , L. Fields , J. Chvojka , L. Aliaga , O. Altinok , B. Baldin , A. Baumbaugh , A. Bodek , D. Boehnlein , S. Boyd , R. Bradford , W. K. Brooks , H. Budd , A. Butkevich , D. A. Martinez Caicedo , C. M. Castromonte , M. E. Christy , H. Chung , M. Clark , H. da Motta , D. S. Damiani , I. Danko , M. Datta , M. Day , R. DeMaat , J. Devan , E. Draeger , S. A. Dytman , G. A. Díaz , B. Eberly , D. A. Edmondson , J. Felix , T. Fitzpatrick , G. A. Fiorentini , A. M. Gago , H. Gallagher , C. A. George , J. A. Gielata , C. Gingu , B. Gobbi , R. Gran , N. Grossman , J. Hanson , D. A. Harris , J. Heaton , A. Higuera , I. J. Howley , K. Hurtado , M. Jerkins , T. Kafka , J. Kaisen , M. O. Kanter , C. E. Keppel , J. Kilmer , M. Kordosky , A. H. Krajeski , S. A. Kulagin , T. Le , H. Lee , A. G. Leister , G. Locke , G. Maggi , E. Maher , S. Manly , W. A. Mann , C. M. Marshall , K. S. McFarland , C. L. McGivern , A. M. McGowan , A. Mislivec , J. G. Morfín , J. Mousseau , D. Naples , J. K. Nelson , G. Niculescu , I. Niculescu , N. Ochoa , C. D. O'Connor , J. Olsen , B. Osmanov , J. Osta , J. L. Palomino , V. Paolone , J. Park , C. E. Patrick , G. N. Perdue , C. Peña , L. Rakotondravohitra , R. D. Ransome , H. Ray , L. Ren , P. A. Rodrigues , C. Rude , K. E. Sassin , H. Schellman , D. W. Schmitz , R. M. Schneider , E. C. Schulte , C. Simon , F. D. Snider , M. C. Snyder , J. T. Sobczyk , C. J. Solano Salinas , N. Tagg , W. Tan , B. G. Tice , G. Tzanakos , J. P. Velásquez , J. Walding , T. Walton , J. Wolcott , B. A. Wolthuis , N. Woodward , G. Zavala , H. B. Zeng , D. Zhang , L. Y. Zhu , B. P. Ziemer

We calculate the total and differential quasielastic cross sections for neutrino and antineutrino scattering on nucleons using up to date fits to the nucleon elastic electromagnetic form factors $G_E^p$, $G_E^n$, $G_M^p$, $G_M^n$, and $F_A$…

High Energy Physics - Experiment · Physics 2009-06-02 A. Bodek , H. Budd , J. Arrington

After the initial discovery of the so-called "spin crisis in the parton model" in the 1980's, a large set of polarization data in deep inelastic lepton-nucleon scattering was collected at labs like SLAC, DESY and CERN. More recently, new…

High Energy Physics - Phenomenology · Physics 2009-06-09 S. E. Kuhn , J. -P. Chen , E. Leader

The parity violation programs at MIT-Bates, Jefferson Lab and Mainz are presently focused on developing a better understanding of the sea-quark contributions to the vector matrix elements of nucleon structure. The success of these programs…

Nuclear Experiment · Physics 2015-06-26 E. J. Beise

Precision measurements of antineutrino elastic scattering on hydrogen from future neutrino experiments offer a unique opportunity to access the low-energy structure of protons and neutrons. We discuss the determination of the nucleon…

High Energy Physics - Phenomenology · Physics 2024-03-05 Roberto Petti , Richard J. Hill , Oleksandr Tomalak

The recent parity-violating $ep$ forward-scattering elastic asymmetry data from Jefferson Lab (HAPPEx and G0), when combined with the $\nu p$ elastic cross section data from Brookhaven (E734), permit an extraction of the strangeness…

High Energy Physics - Experiment · Physics 2008-04-07 Stephen Pate

We present the proton and neutron vector form factors in a convenient parametric form that is optimized for momentum transfers $\lesssim$ few GeV$^2$. The form factors are determined from a global fit to electron scattering data and precise…

High Energy Physics - Phenomenology · Physics 2020-10-23 Kaushik Borah , Richard J. Hill , Gabriel Lee , Oleksandr Tomalak

We investigate deep inelastic lepton scattering from the nucleon within a constituent quark picture, in which the internal structure of constituent quarks is modeled by meson and diquark dressing. In a covariant framework this structure…

Nuclear Theory · Physics 2009-10-28 W. Melnitchouk , W. Weise