activity
20172022
most citedOn production and asymmetric focusing of flat electron beams using rectangular capillary discharge plasmas

8 citations · 18 across the 4 of their papers we have counts for

collaborators

5 papers

physics.acc-ph20221 cited

High average power ultrafast laser technologies for driving future advanced accelerators

Leily Kiani, Tong Zhou, Seung-Whan Bahk +34

Large scale laser facilities are needed to advance the energy frontier in high energy physics and accelerator physics. Laser plasma accelerators are core to advanced accelerator co…

physics.med-ph20228 cited

Transformative Technology for FLASH Radiation Therapy: A Snowmass 2021 White Paper

Salime Boucher, Eric Esarey, Cameron Geddes +16

Conventional cancer therapies include surgery, radiation therapy, chemotherapy, and, more recently, immunotherapy. These modalities are often combined to improve the therapeutic in…

physics.plasm-ph20211 cited

Radial Density Profile and Stability of Capillary Discharge Plasma Waveguides of Lengths up to 40 Centimeters

M. Turner, A. J. Gonsalves, S. S. Bulvanov +10

We measured the parameter reproducibility and radial electron density profile of capillary discharge waveguides with diameters of 650 um to 2 mm and lengths of 9 to 40 cm. To our k…

physics.acc-ph2018

Direct Measurement of Focusing Fields in Active Plasma Lenses

J. -H. Röckemann, L. Schaper, S. K. Barber +17

Active plasma lenses have the potential to enable broad-ranging applications of plasma-based accelerators owing to their compact design and radially symmetric kT/m-level focusing f…

physics.plasm-ph20178 cited

On production and asymmetric focusing of flat electron beams using rectangular capillary discharge plasmas

G. A. Bagdasarov, N. A. Bobrova, A. S. Boldarev +15

A method for the asymmetric focusing of electron bunches, based on the active plasma lensing technique is proposed. This method takes advantage of the strong inhomogeneous magnetic…