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To better understand the physical processes associated with Jovian decametric (DAM) radio emissions, we present the statistical study of DAMs and inferred characteristics of DAM sources based on multi-view observation from Wind and STEREO…

Earth and Planetary Astrophysics · Physics 2023-05-24 Ruobing Zheng , Yuming Wang , Xiaolei Li , Chuanbing Wang , Xianzhe Jia

The high latitude radio emissions produced by the Cyclotron Maser Instability (CMI) in Jupiter's magnetosphere extend from a few kHz to 40 MHz. Part of the decametric emissions is of auroral origin, and part is driven by the moons Io,…

Earth and Planetary Astrophysics · Physics 2019-02-01 C. K. Louis , L. Lamy , P. Zarka , B. Cecconi , S. L. G. Hess , X. Bonnin

In this comment of the article [arXiv:2002.01150] "Locating the source field lines of Jovian decametric radio emissions" by YuMing Wang et al., 2020, we discuss the assumptions used by the authors to compute the beaming angle of Jupiter s…

Earth and Planetary Astrophysics · Physics 2022-01-19 Laurent Lamy , Baptiste Cecconi , Stéphane Aicardi , Corentin Louis

Decametric (DAM) radio emissions are one of the main windows through which one can reveal and understand the Jovian magnetospheric dynamics and its interaction with the moons. DAMs are generated by energetic electrons through…

Earth and Planetary Astrophysics · Physics 2020-03-03 Yuming Wang , Xianzhe Jia , Chuanbing Wang , Shui Wang , V. Krupar

The Low Frequency Array (LOFAR) is an international radio telescope array, consisting of 38 stations in the Netherlands and 14 international stations spread over Europe. Here we present an observation method to study the jovian decametric…

We describe an interferometric reflectometer method for passive detection of subsurface oceans and liquid water in Jovian icy moons using Jupiter's decametric radio emission (DAM). The DAM flux density exceeds 3,000 times the galactic…

Earth and Planetary Astrophysics · Physics 2015-06-19 Andrew Romero-Wolf , Steve Vance , Frank Maiwald , Essam Heggy , Paul Ries , Kurt Liewer

Standard models of force balance along Jovian field lines predict the location of the Io plasma torus to be the centrifugal equator of Jupiter's magnetosphere, i.e. the position along the magnetic field lines farthest away from Jupiter's…

Space Physics · Physics 2023-09-29 Stephan Schlegel , Joachim Saur

The ion energy distribution functions (IEDF) have been measured for a helium atmospheric pressure dielectric barrier discharge jet expanding into the air and impacting a metal or ceramic surface. The plasma jet produces ionization waves as…

Plasma Physics · Physics 2025-05-13 Daniel Henze , Laura Chauvet , Achim von Keudell

New observations of Jupiter's decametric radio emissions have been made with the Long Wavelength Array Station 1 (LWA1) which is capable of making high quality observations as low as 11 MHz. Full Stokes parameters were determined for…

Juno has allowed clear, high-resolution imaging of Io's polar volcanoes using the Jovian Infrared Auroral Mapper (JIRAM) instrument. We have used data from JIRAM's M-band (4.78 um) imager from eleven Juno orbits to construct a global map of…

Earth and Planetary Astrophysics · Physics 2024-09-25 M. Pettine , S. Imbeah , J. Rathbun , A. Hayes , R. Lopes-Gautier , A. Mura , F. Tosi , F. Zambon , S. Bertolino

By analysing a database of 26 years of observations of Jupiter with the Nancay Decameter Array, we unambiguously identify the radio emissions caused by the Ganymede-Jupiter interaction. We study the energetics of these emissions via the…

Earth and Planetary Astrophysics · Physics 2018-10-17 P. Zarka , M. S. Marques , C. Louis , V. B. Ryabov , L. Lamy , E. Echer , B. Cecconi

Measurements are reported of electromagnetic emission close to the cyclotron frequency of energetic ions in JET plasmas heated by waves in the ion cyclotron range of frequencies (ICRF). Hydrogen was the majority ion species in all of these…

The flow of material from Io's volcanoes into the Io plasma torus, out into the magnetosphere, and along field lines into Jupiter's upper atmosphere is not adequately understood. The lack of observations of spatial and temporal variations…

Earth and Planetary Astrophysics · Physics 2017-03-29 Phillip H. Phipps , Paul Withers

At Jupiter, part of the auroral radio emissions are induced by the Galilean moons Io, Europa and Ganymede. Until now, except for Ganymede, they have been only remotely detected, using ground-based radio-telescopes or electric antennas…

Detection of electron cyclotron maser (ECM) emission from exoplanets in the 10-40 MHz radio band is likely the only way to measure an exoplanet's magnetic field directly. However, no definitive detection of exoplanetary ECM emission has…

Earth and Planetary Astrophysics · Physics 2025-01-14 C. M. Cordun , H. K. Vedantham , M. A. Brentjens , F. F. S. van der Tak

AIMS: To demonstrate and test the capability of the next generation of low-frequency radio telescopes to perform high resolution observations across intra-continental baselines. Jupiter's strong burst emission is used to perform broadband…

Astrophysics · Physics 2008-09-17 A. Nigl , P. Zarka , J. Kuijpers , H. Falcke , L. Baehren , L. Denis

Io is one of Jupiter's largest moons and the most volcanically active body in the Solar System. Its very active surface has hot spots produced by volcanic eruptions popping up at seemingly random locations and times. Characterizing the…

Earth and Planetary Astrophysics · Physics 2025-08-21 J. Sanchez-Bermudez , I. dePater , A. Conrad , A. Sivaramakrishnan , E. Molter , D. Thatte , R. Cooper , K. deKleer , L. Roth

Streams of high speed dust particles originate from Jupiter's innermost Galilean moon Io. After release from Io, the particles collect electric charges in the Io plasma torus, gain energy from the co-rotating electric field of Jupiter's…

$\textit{Context.}$ The magnetized Solar System planets are strong radio emitters and theoretical studies suggest that the radio emission from nearby exoplanets in close-in orbits could reach intensity levels $10^{3}-10^{7}$ times higher…

Earth and Planetary Astrophysics · Physics 2019-04-10 Jake D. Turner , Jean-Mathias Grießmeier , Philippe Zarka , Iaroslavna Vasylieva

On 2015 February 21, simultaneous observations of Jupiter's decametric radio emission between 10 and 33 MHz were carried out using three powerful low-frequency radio telescopes: Long Wavelength Array Station One (LWA1) in USA; Nan\c{c}ay…

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