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相关论文: Similarity for ultra-relativistic laser plasmas an…

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The similarity theory is derived for ultra-relativistic laser-plasma interactions. First, it is shown that the most fundamental S-similarity is valid for both under- and overdense plasmas. Then, the particular case of tenious plasma is…

等离子体物理 · 物理学 2016-09-08 S. Gordienko , A. Pukhov

The Bubble regime of electron acceleration in ultra-relativistic laser plasma is considered. It has been shown that the bubble can produce ultra-short dense bunches of electrons with quasi-monoenergetic energy spectra. The first experiment…

等离子体物理 · 物理学 2009-11-10 A. Pukhov , S. Gordienko , S. Kiselev , I. Kostyukov

A strongly mismatched regime of self-guided nonlinear laser-plasma acceleration in the bubble regime is modeled for optimization of Laser to Particle energy efficiency with application to recently proposed laser positron accelerator. The…

等离子体物理 · 物理学 2018-12-18 Aakash A. Sahai

We explore a regime of laser-driven plasma acceleration of electrons where the radial envelope of the laser-pulse incident at the plasma entrance is strongly mismatched to the nonlinear plasma electron response excited by it. This regime…

等离子体物理 · 物理学 2017-04-11 A. A. Sahai , K. Poder , J. C. Wood , J. M. Cole , N. C. Lopes , S. P. D. Mangles , Z. Najmudin

The concept of a hybrid laser wakefield/direct laser plasma accelerator is proposed. Relativistic electrons undergoing resonant betatron oscillations inside the plasma bubble created by a laser pulse are accelerated by gaining energy…

等离子体物理 · 物理学 2015-06-11 Xi Zhang , Vladimir N. Khudik , Gennady Shvets

We introduce a first full analytical bubble and blow-out model for a radially inhomogeneous plasma in a quasi-static approximation. For both cases we calculate the accelerating and the focusing fields. In our model we also assume a thin…

等离子体物理 · 物理学 2016-06-14 Johannes Thomas , Igor Yu. Kostyukov , Jari Pronold , Anton Golovanov , Alexander Pukhov

The physics of energy transfer between the laser and the plasma in laser wakefield accelerators is studied. We find that wake excitation by arbitrary laser shapes can be parameterized using the total pulse energy and pulse depletion length.…

加速器物理 · 物理学 2011-07-19 Anatoly Spitkovsky , Pisin Chen

Plasma accelerators can sustain very high acceleration gradients. They are promising candidates for future generations of particle accelerators for several scientific, medical and technological applications. Current plasma based…

等离子体物理 · 物理学 2020-07-15 J. Vieira , R. A. Fonseca , L. O. Silva

Direct laser acceleration of electrons in ion channels is investigated in a general case when the laser phase velocity is greater than (or equal to) the speed of light. Using the similarity of the equations of motion for ultra-relativistic…

等离子体物理 · 物理学 2016-11-23 Vladimir Khudik , Alexey Arefiev , Xi Zhang , Gennady Shvets

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…

等离子体物理 · 物理学 2026-03-30 P. Valenta , K. G. Miller , B. K. Russell , M. Lamač , M. Jech , G. M. Grittani , S. V. Bulanov

Direct laser acceleration has proven to be an efficient source of high-charge electron bunches and high brilliance X-rays. However, an analytical description of the acceleration in the interaction with varying plasma density targets is…

等离子体物理 · 物理学 2024-12-19 Robert Babjak , Bertrand Martinez , Miroslav Krus , Marija Vranic

In this paper we consider classical electrodynamic theories with maximal acceleration and some of their phenomenological consequences for laser-plasma acceleration. It is shown that in a recently proposed higher order jet theory of…

综合物理 · 物理学 2020-03-10 Ricardo Gallego Torromé

Realizing the full potential of ultrahigh-intensity lasers for particle and radiation generation will require multi-beam arrangements due to technology limitations. Here, we investigate how to optimize their coupling with solid targets.…

We demonstrate the scale-invariant behavior of electromagnetic wave-driven radio-frequency plasmas across different dimensional scales. Using two-dimensional electromagnetic particle-in-cell simulations, we show that plasma uniformity…

等离子体物理 · 物理学 2026-01-12 Hanyang Li , Yulia Sharova , Denis Eremin , Yangyang Fu

We use Bayesian optimization in combination with three-dimensional particle-in-cell simulations to determine the optimal laser and plasma parameters that, for a given laser pulse energy, maximize the cut-off energy of an electron beam…

等离子体物理 · 物理学 2025-09-16 P. Valenta , T. Zh. Esirkepov , J. D. Ludwig , S. C. Wilks , S. V. Bulanov

We propose and detail a multi-step analytical procedure, based on an improved fully relativistic plane model for Laser Wake Field Acceleration, to tailor the initial density of a cold diluted plasma to the laser pulse profile, so as to…

等离子体物理 · 物理学 2026-03-17 Gaetano Fiore , Paolo Tomassini

In the effort of achieving high-energetic ion beams from the interaction of ultrashort laser pulses with a plasma, volumetric acceleration mechanisms beyond Target Normal Sheath Acceleration have gained attention. A relativisticly intense…

Advances in the generation of relativistic intensity pulses with wavelengths in the X-ray regime, through high harmonic generation from near-critical plasmas, opens up the possibility of X-ray driven wakefield acceleration. The similarity…

等离子体物理 · 物理学 2018-02-14 B. Svedung Wettervik , A. Gonoskov , M. Marklund

A new laser-proton acceleration structure combined by two relativistic electron shells, a suprathermal electron shell and a thermal electron cloud is proposed for $a\gtrapprox80\sigma_0$, where a is the normalized laser field and $\sigma_0$…

等离子体物理 · 物理学 2011-12-13 Yongsheng Huang , Naiyan Wang , Xiuzhang Tang , Yijin Shi , Zhang Shan

Experimental results, supported by precise modelling, demonstrate optimisation of a plasma-based injector with intermediate laser pulse energy ($<1$ J), corresponding to a normalised vector potential $a_0 = 2.15$, using ionisation injection…

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