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A microtube implosion driven by ultraintense laser pulses is used to produce ultrahigh magnetic fields. Due to the laser-produced hot electrons with energies of mega-electron volts, cold ions in the inner wall surface implode towards the…

等离子体物理 · 物理学 2020-09-03 M. Murakami , J. J. Honrubia , K. Weichman , A. V. Arefiev , S. V. Bulanov

Extremely high axial magnetic fields above the gigagauss (GG) level are supposed to exist in neutron stars, which may be a one of the critical parameters for their internal structures and be responsible for the X and gamma-ray emission from…

等离子体物理 · 物理学 2025-11-10 Huanyu Song , Zhengming Sheng , Linzheng Wang , Min Chen , Suming Weng , Masakatsu Murakami , Jie Zhang

A simple setup for the generation of ultra-intense quasistatic magnetic fields, based on the generation of electron currents with a predefined geometry in a curved 'escargot' target, is proposed and analysed. Particle-In-Cell simulations…

等离子体物理 · 物理学 2015-05-20 Ph. Korneev , E. d'Humieres , V. Tikhonchuk

Reaching gigagauss magnetic fields opens new horizons both in atomic and plasma physics. At these magnetic field strengths, the electron cyclotron energy $\hbar\omega_{c}$ becomes comparable to the atomic binding energy (the Rydberg), and…

等离子体物理 · 物理学 2021-07-07 K. Jiang , A. Pukhov , C. T. Zhou

A simple setup for the generation of ultra-intense quasistatic magnetic fields is proposed and analysed. Estimations and numerical Particle-In-Cell calculations show that magnetic fields of gigagauss scale may be generated with conventional…

等离子体物理 · 物理学 2014-09-19 Philipp Korneev , Emmanuel D'Humieres , Vladimir Tikhonchuk

Spontaneous magnetic field generation plays important role in laser-plasma interactions. Strong quasi-static magnetic fields affect the thermal conductivity and the plasma dynamics, particularly in the case of ultra intense laser where the…

等离子体物理 · 物理学 2025-12-04 Y-J. Gu , M. Murakami

We demonstrate ultrashort (6 ps), multi-Megagauss (27 MG) magnetic pulses generated upon interaction of an intense laser pulse (10^{16} Wcm^-2, 100 fs) with a solid target. The temporal evolution of these giant fields generated near the…

等离子体物理 · 物理学 2009-11-07 A. S. Sandhu , A. K. Dharmadhikari , P. P. Rajeev , G. R. Kumar , S. Sengupta , A. Das , P. K. Kaw

Intense magnetic fields modify the properties of extremely dense matter via complex processes that call for precise measurements in very harsh conditions. This endeavor becomes even more challenging because the generation of mega-gauss…

等离子体物理 · 物理学 2018-10-02 P. -A. Gourdain , G. Brent , J. B. Greenly , D. A. Hammer , R. V. Shapovalov

Magnetic fields have a crucial role in physics at all scales, from astrophysics to nanoscale phenomena. Large fields, constant or pulsed, allow investigation of material in extreme conditions, opening up plethora of practical applications…

等离子体物理 · 物理学 2016-07-06 Zsolt Lecz , Ivan V. Konoplev , Andrei Seryi , Alexander Andreev

While plasma often behaves diamagnetically, we demonstrate that the laser irradiation of a thin opaque target with an embedded target-transverse seed magnetic field $B_\mathrm{seed}$ can trigger the generation of an order-of-magnitude…

等离子体物理 · 物理学 2020-12-02 Kathleen Weichman , Alexander P. L. Robinson , Masakatsu Murakami , Alexey V. Arefiev

The dynamics of magnetic fields with amplitude of several tens of Megagauss, generated at both sides of a solid target irradiated with a high intensity (? 1019W/cm2) picosecond laser pulse, has been spatially and temporally resolved using a…

We present a new magnetic field generation mechanism in underdense plasmas driven by the beating of two, co-propagating, Laguerre-Gaussian (LG) orbital angular momentum (OAM) laser pulses with different frequencies and also different twist…

等离子体物理 · 物理学 2018-10-10 Y. Shi , J. Vieira , R. M. G. M. Trines , R. Bingham , B. F. Shen , R. J. Kingham

The interaction of intense linearly polarized femtosecond laser pulses with solids is known to generate azimuthal magnetic fields, while circularly polarized light has been shown to create axial fields. We demonstrate through experiments…

A scheme to generate magnetized relativistic plasmas in laboratory is proposed. It is based on interaction of ultra-high-intensity sub-picosecond laser pulses with few-micron thick foils or films. By means of Particle-In-Cell simulations it…

等离子体物理 · 物理学 2023-02-03 Artem V. Korzhimanov

Magnetic field generation and amplification techniques are popular due to their applications in several fields, including laboratory astrophysics and inertial confinement fusion. Microtube Implosion (MTI) is a scheme that amplifies a seed…

等离子体物理 · 物理学 2025-05-12 Jessa Jayne Miranda , Myles Allen Zosa

Production of the huge longitudinal magnetic fields by using an ultraintense laser pulse irradiating a solenoid target is considered. Through three-dimensional particle-in-cell simulations, it is shown that the longitudinal magnetic field…

等离子体物理 · 物理学 2018-03-20 K. D. Xiao , C. T. Zhou , H. Zhang , T. W. Huang , R. Li , B. Qiao , J. M. Cao , T. X. Cai , S. C. Ruan , X. T. He

We argue that ultra-high energy cosmic rays emitted by galaxy clusters result in electric currents in filaments of the large-scale structure that are sufficient to generate magnetic fields in voids of the magnitude of ~1e-12 G and the…

高能天体物理现象 · 物理学 2012-02-03 M. S. Pshirkov , P. G. Tinyakov

Generating a powerful and quasistatic magnetic field within the confines of a tabletop laboratory experiment has proven to be a persistent challenge. The creation of magnetized high-energy-density plasma through such experiments presents…

It is demonstrated that targets with a broken rotational symmetry may facilitate generation of a strong axial (poloidal) magnetic field. An intense laser beam irradiating such a target creates intense electron currents carrying vorticity…

等离子体物理 · 物理学 2017-04-05 Ph. Korneev , V. Tikhonchuk , E. d'Humières

A strong electron current triggered by a femtosecond relativistically intense laser pulse in a foil coil-like target is shown to be able to generate a solenoidal-type extremely strong magnetic field. The magnetic field lifetime sufficiently…

等离子体物理 · 物理学 2019-05-21 A. V. Brantov , Ph. Korneev , V. Yu. Bychenkov
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