P-A Lindqvist
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Explore the profile of P-A Lindqvist including associated specialties, affiliations and a list of published articles.
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22
Citations
112
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Recent Articles
1.
Kitamura N, Amano T, Omura Y, Boardsen S, Gershman D, Miyoshi Y, et al.
Nat Commun
. 2022 Oct;
13(1):6259.
PMID: 36307443
Electromagnetic whistler-mode waves in space plasmas play critical roles in collisionless energy transfer between the electrons and the electromagnetic field. Although resonant interactions have been considered as the likely generation...
2.
Hasegawa H, Denton R, Nakamura T, Genestreti K, Phan T, Nakamura R, et al.
J Geophys Res Space Phys
. 2022 Oct;
127(7):e2022JA030408.
PMID: 36248013
We present observations in Earth's magnetotail by the Magnetospheric Multiscale spacecraft that are consistent with magnetic field annihilation, rather than magnetic topology change, causing fast magnetic-to-electron energy conversion in an...
3.
Graham D, Khotyaintsev Y, Andre M, Vaivads A, Divin A, Drake J, et al.
Nat Commun
. 2022 May;
13(1):2954.
PMID: 35618713
Coulomb collisions provide plasma resistivity and diffusion but in many low-density astrophysical plasmas such collisions between particles are extremely rare. Scattering of particles by electromagnetic waves can lower the plasma...
4.
Lu S, Wang R, Lu Q, Angelopoulos V, Nakamura R, Artemyev A, et al.
Nat Commun
. 2020 Oct;
11(1):5049.
PMID: 33028826
Magnetotail reconnection plays a crucial role in explosive energy conversion in geospace. Because of the lack of in-situ spacecraft observations, the onset mechanism of magnetotail reconnection, however, has been controversial...
5.
Chen L, Wang S, Le Contel O, Rager A, Hesse M, Drake J, et al.
Phys Rev Lett
. 2020 Jul;
125(2):025103.
PMID: 32701350
We report measurements of lower-hybrid drift waves driving electron heating and vortical flows in an electron-scale reconnection layer under a guide field. Electrons accelerated by the electrostatic potential of the...
6.
Observational Evidence for Stochastic Shock Drift Acceleration of Electrons at the Earth's Bow Shock
Amano T, Katou T, Kitamura N, Oka M, Matsumoto Y, Hoshino M, et al.
Phys Rev Lett
. 2020 Feb;
124(6):065101.
PMID: 32109113
The first-order Fermi acceleration of electrons requires an injection of electrons into a mildly relativistic energy range. However, the mechanism of injection has remained a puzzle both in theory and...
7.
Li W, Graham D, Khotyaintsev Y, Vaivads A, Andre M, Min K, et al.
Nat Commun
. 2020 Jan;
11(1):141.
PMID: 31919351
The Magnetospheric Multiscale (MMS) spacecraft encounter an electron diffusion region (EDR) of asymmetric magnetic reconnection at Earth's magnetopause. The EDR is characterized by agyrotropic electron velocity distributions on both sides...
8.
Cozzani G, Retino A, Califano F, Alexandrova A, Le Contel O, Khotyaintsev Y, et al.
Phys Rev E
. 2019 May;
99(4-1):043204.
PMID: 31108651
The electron diffusion region (EDR) is the region where magnetic reconnection is initiated and electrons are energized. Because of experimental difficulties, the structure of the EDR is still poorly understood....
9.
Torbert R, Burch J, Phan T, Hesse M, Argall M, Shuster J, et al.
Science
. 2018 Nov;
362(6421):1391-1395.
PMID: 30442767
Magnetic reconnection is an energy conversion process that occurs in many astrophysical contexts including Earth's magnetosphere, where the process can be investigated in situ by spacecraft. On 11 July 2017,...
10.
Burch J, Webster J, Genestreti K, Torbert R, Giles B, Fuselier S, et al.
J Geophys Res Space Phys
. 2018 Jun;
123(2):1118-1133.
PMID: 29938153
This paper reports on Magnetospheric Multiscale observations of whistler mode chorus and higher-frequency electrostatic waves near and within a reconnection diffusion region on 23 November 2016. The diffusion region is...