Search results for "Physics::Accelerator Physics"
showing 10 items of 1235 documents
"Table_F08" of "T and F asymmetries in $��^0$ photoproduction on the proton"
2022
Beam-target asymmetry F for c.m. energy W= 1.4492 GeV
"Table_F33" of "T and F asymmetries in $��^0$ photoproduction on the proton"
2022
Beam-target asymmetry F for c.m. energy W= 1.8728 GeV
"Table_F13" of "T and F asymmetries in $��^0$ photoproduction on the proton"
2022
Beam-target asymmetry F for c.m. energy W= 1.5432 GeV
"Table_F19" of "T and F asymmetries in $��^0$ photoproduction on the proton"
2022
Beam-target asymmetry F for c.m. energy W= 1.6491 GeV
"Table_F04" of "T and F asymmetries in $��^0$ photoproduction on the proton"
2022
Beam-target asymmetry F for c.m. energy W= 1.3693 GeV
"Table_F11" of "T and F asymmetries in $��^0$ photoproduction on the proton"
2022
Beam-target asymmetry F for c.m. energy W= 1.5063 GeV
"Table_F21" of "T and F asymmetries in $��^0$ photoproduction on the proton"
2022
Beam-target asymmetry F for c.m. energy W= 1.6828 GeV
"Table_F01" of "T and F asymmetries in $��^0$ photoproduction on the proton"
2022
Beam-target asymmetry F for c.m. energy W= 1.3062 GeV
Innovative remotely-controlled bending device for thin silicon and germanium crystals
2020
Steering of negatively charged particle beams below 1 GeV has demonstrated to be possible with thin bent silicon and germanium crystals. A newly designed mechanical holder was used for bending crystals, since it allows a remotely-controlled adjustment of crystal bending and compensation of unwanted torsion. Bent crystals were installed and tested at the MAMI Mainz MIcrotron to achieve steering of 0.855-GeV electrons at different bending radii. We report the description and characterization of the innovative bending device developed at INFN Laboratori Nazionali di Legnaro (LNL).
Photonuclear reactions with zinc: A case for clinical linacs
2015
WOS: 000365732300003