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The system of a trapped ion translationally excited by a blue-detuned near-resonant laser, sometimes described as an instance of a phonon laser, has recently received attention as interesting in its own right and for its application to…

Atomic Physics · Physics 2015-04-24 X. Chen , Y. -W. Lin , B. C. Odom

Plasma-Based Acceleration (PBA) has been demonstrated using laser, electron, and proton drivers. However, significant challenges remain in achieving high efficiency, stable acceleration, and scalable energy gain. Heavy ion beam drivers,…

Accelerator Physics · Physics 2025-07-04 Jiangdong Li , Jiancheng Yang , Guoxing Xia , Jie Liu , Ruihu Zhu , Xiangwen Qiao

Radiation Pressure Acceleration relies on high intensity laser pulse interacting with solid target to obtain high maximum energy, quasimonoenergetic ion beams. Either extremely high power laser pulses or tight focusing of laser radiation is…

An experimental study on 55fs laser driven plasma accelerator using mixed gas-jet target with varying plasma density is used to identify the role of different acceleration mechanisms, viz. Direct Laser Acceleration (DLA) and wakefield. At…

Plasma Physics · Physics 2019-08-09 D. Hazra , A. Moorti , A. Upadhyay , J. A. Chakera

The Advanced Wakefield (AWAKE) Experiment is a proof-of-principle experiment demonstrating the acceleration of electron beams via proton-driven plasma wakefield acceleration. AWAKE Run 1 achieved acceleration of electron beams to 2 GeV and…

An enhanced ionization injection scheme using a tightly focused laser pulse with intensity near the ionization potential to trigger the injection process in a mismatched pre-plasma channel has been proposed and examined via…

Accelerator Physics · Physics 2020-02-21 F. Li , C. J. Zhang , Y. Wan , Y. P. Wu , J. F. Hua , C. H. Pai , W. Lu , W. B. Mori , C. Joshi

For sufficiently short relativistic-intensity laser pulses, the disparity in time scales for electron and ion motion causes ions to behave as a fixed, neutralizing background. As the pulse duration or intensity is increased, ion motion…

We revisit the matching conditions for self-guided laser pulse propagation in plasma and refine their formulation to maximize the energy of electrons produced via laser wakefield acceleration. Bayesian optimization, combined with…

Plasma Physics · Physics 2026-03-30 P. Valenta , K. G. Miller , B. K. Russell , M. Lamač , M. Jech , G. M. Grittani , S. V. Bulanov

We leverage recent advances in 3D-printing technology to design and fabricate a micro-ion trap with a spatially distinct loading zone for more efficient loading of ions from effusive thermal ovens. The design reduces the Mathieu-$q$…

High-intensity laser systems present unique measurement and optimization challenges due to their high complexity, low repetition rates, and shot-to-shot variations. We discuss recent developments towards a unified framework based on…

Optics · Physics 2025-06-06 A. Döpp , C. Eberle , J. Esslinger , S. Howard , F. Irshad , J. Schroeder , N. Weisse , S. Karsch

In the framework of the upgrade of the SPARC_LAB facility at INFN-LNF, named EuPRAXIA@SPARC_LAB, a high gradient linac is foreseen. One of the most suitable options is to realize it in X-band. A preliminary design study of both accelerating…

Proton (and ion) cancer therapy has proven to be an extremely effective even supe-rior method of treatment for some tumors 1-4. A major problem, however, lies in the cost of the particle accelerator facilities; high procurement costs…

Accurately identifying the parameters of electrochemical models of li-ion battery (LiB) cells is a critical task for enhancing the fidelity and predictive ability. Traditional parameter identification methods often require extensive data…

Systems and Control · Electrical Eng. & Systems 2025-04-23 Ian Mikesell , Samuel Filgueira da Silva , Mehmet Fatih Ozkan , Faissal El Idrissi , Prashanth Ramesh , Marcello Canova

We report on recent progress and next steps in the design of the proposed MATHUSLA Long Lived Particle (LLP) detector for the HL-LHC as part of the Snowmass 2021 process. Our understanding of backgrounds has greatly improved, aided by…

High Energy Physics - Experiment · Physics 2023-03-31 Cristiano Alpigiani , Juan Carlos Arteaga-Velázquez , Austin Ball , Liron Barak , Jared Barron , Brian Batell , James Beacham , Yan Benhammo , Benjamin Brau , Karen Salomé Caballero-Mora , Paolo Camarri , Roberto Cardarelli , John Paul Chou , Wentao Cui , David Curtin , Miriam Diamond , Keith R. Dienes , Liam Andrew Dougherty , William Dougherty , Marco Drewes , Sameer Erramilli , Rouven Essig , Erez Etzion , Jared Evans , Arturo Fernández Téllez , Grace Finlayson , Oliver Fischer , Jim Freeman , Jonathan Gall , Ali Garabaglu , Aran Garcia-Bellido , Stefano Giagu , Bhawna Gomber , Stephen Elliott Greenberg , Roberto Guida , Andy Haas , Bahgat Hassan , Yuekun Heng , Shih-Chieh Hsu , Keegan Humphrey , Giuseppe Iaselli , Ken Johns , Audrey Kvam , Dragoslav Lazic , Liang Li , Jiahao Liao , Barbara Liberti , Zhen Liu , Henry Lubatti , Lillian Luo , Giovanni Marsella , Mario Iván Martínez Hernández , Matthew McCullough , David McKeen , Patrick Meade , Gilad Mizrachi , O. G. Morales-Olivares , David Morrissey , Ljiljana Morvai , Meny Raviv Moshe , Michalis Panagiotou , Mason Proffitt , Dennis Cazar Ramirez , Matthew Reece , Steven H. Robertson , Mario Rodríguez-Cahuantzi , Albert de Roeck , Amber Roepe , Larry Ruckman , James John Russell , Heather Russell , Halil Saka , Rinaldo Santonico , Marco Schioppa , Giuseppe Di Sciascio , Jessie Shelton , Brian Shuve , Yiftah Silver , Luigi Di Stante , Daniel Stolarski , Mike Strauss , David Strom , John Stupak , Martin A. Subieta Vasquez , Sanjay Kumar Swain , Chin Lung Tan , Guillermo Tejeda Muñoz , Steffie Ann Thayil , Brooks Thomas , Emma Torro , Yuhsin Tsai , Gordon Watts , Zijun Xu , Charles Young , Igor Zolkin , Jose Zurita

In a laser wakefield accelerator (LWFA), an intense laser pulse excites a plasma wave that traps and accelerates electrons to relativistic energies. When the pulse overlaps the accelerated electrons, it can enhance the energy gain through…

An updated design for the LEP3 electron-positron collider is presented. The machine is designed to operate in the existing tunnel infrastructure currently hosting the Large Hadron Collider and aims to deliver high luminosity for precision…

Accelerator Physics · Physics 2026-05-20 M. Koratzinos , P. Raimondi

A novel approach to implement and control electron injection into the accelerating phase of a laser wakefield accelerator (LWFA) is presented. It utilizes a wire, which is introduced into the flow of a supersonic gas jet creating shock…

The dynamics of the acceleration of ultrathin foil targets by the radiation pressure of superintense, circularly polarized laser pulses is investigated by analytical modeling and particle-in-cell simulations. By addressing self-induced…

Plasma Physics · Physics 2010-10-12 Andrea Macchi , Silvia Veghini , Francesco Pegoraro

In recent years, the use of Low Power Wide Area Network (LPWAN) is increasing for the Internet of Things (IoT) applications. In order to demonstrate the application of LPWAN technologies for a realistic smart metering scenario, we set-up…

Networking and Internet Architecture · Computer Science 2019-07-30 Muhammad Nouman Rafi , Muhammad Muaaz

We report on the first results of laser plasma wakefield acceleration driven by ultrashort mid-infrared laser pulses (\lambda= 3.9 \mu m, 100 fs, 0.25 TW), which enable near- and above-critical density interactions with moderate-density gas…