Modeling the evolution of chorus waves into plasmaspheric hiss [PDF]
Plasmaspheric hiss (PH) is a band-limited, incoherent whistler mode emission found predominantly in the plasmasphere or high-density plasma regions in the near-Earth space environment.
Jacob Bortnik +2 more
exaly +4 more sources
Statistical Analysis of Hiss Waves in Plasmaspheric Plumes Using Van Allen Probe Observations [PDF]
Plasmaspheric hiss waves commonly observed in high‐density regions in the Earth's magnetosphere are known to be one of the main contributors to the loss of radiation belt electrons.
Kyung-Chan Kim, Yuri Y. Shprits
exaly +5 more sources
Nightside Plasmaspheric Plume-To-Core Migration of Whistler-Mode Hiss Waves
AbstractWhistler‐mode hiss waves play an important role in the radiation belt electron depletion. Whether the hiss waves with significant differences in amplitude and propagation direction within the plasmaspheric core and plume are related to each other remains unclear.
Zhenpeng Su, Huinan Zheng, Zhaoguo He
exaly +2 more sources
Statistical Relationship Between Exohiss Waves and Plasmaspheric Hiss
AbstractBased on the Van Allen Probe A observations from 2013 to 2015, we show the statistical relationship between exohiss waves and plasmaspheric hiss. Both hiss and exohiss waves have higher occurrence rates on the dayside (MLT = 8–20) and are positively correlated.
Liuyuan Li, Jiang Yu
exaly +2 more sources
The Relationship of Exohiss Waves With Plasmaspheric Hiss Distribution and Solar Wind Parameters
AbstractExohiss waves below 0.1 electron cyclotron frequency (fce) are structureless whistler‐mode emissions typically observed in the plasmatrough. Plasmaspheric hiss may possibly propagate from the plasmasphere into the plasmatrough and evolve into exohiss waves.
Kyung-Chan Kim, Jiwoo Seo
exaly +2 more sources
Statistical Properties of Plasmaspheric Hiss From Van Allen Probes Observations [PDF]
Van Allen Probes observations are used to statistically investigate plasmaspheric hiss wave properties. This analysis shows that the wave normal direction of plasmaspheric hiss is predominantly field aligned at larger L shells, with a bimodal ...
David P Hartley +2 more
exaly +2 more sources
Plasmaspheric Hiss: Coherent and Intense
International audienceIntense~300-Hz to 1.0-kHz plasmaspheric hiss was studied using Polar plasma wave data. It is found that the waves are coherent in all local time sectors with the wave coherency occurring in approximately three-to five-wave cycle ...
Jolene Pickett +2 more
exaly +2 more sources
Identifying the source region of plasmaspheric hiss [PDF]
The presence of the plasmaspheric hiss emission around the Earth has been known for more than 50 years but its origin has remained unknown in terms of source location and mechanism.
Richard B. Horne +2 more
exaly +2 more sources
Disappearance of plasmaspheric hiss following interplanetary shock [PDF]
Plasmaspheric hiss is one of the important plasma waves controlling radiation belt dynamics. Its spatiotemporal distribution and generation mechanism are presently the object of active research.
Zhenpeng Su +2 more
exaly +2 more sources
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Novel Wave Models and Diffusion Coefficients for Plasmaspheric Hiss and Low Frequency Hiss
2021 International Conference on Electromagnetics in Advanced Applications (ICEAA), 2021The Earth's inner magnetosphere is populated by a host of high frequency plasma waves which, via wave-particle interactions, can shape the dynamics of the terrestrial radiation belts. One of these is an incoherent whistler-mode plasma wave commonly referred to as hiss.
David M. Malaspina +2 more
openaire +1 more source

