Andrew F Nagy

Andrew F Nagy

University of Michigan

H-index: 74

North America-United States

About Andrew F Nagy

Andrew F Nagy, With an exceptional h-index of 74 and a recent h-index of 30 (since 2020), a distinguished researcher at University of Michigan, specializes in the field of Ionosphere, Plasma Physics, Aeronomy.

His recent articles reflect a diverse array of research interests and contributions to the field:

5‐Species MHD Study of Martian Proton Loss and Source

Solar Wind-Mars Interaction Under Different Interplanetary Magnetic Field (IMF) Orientations

Hot electron temperature layer in the Martian atmosphere

MHD simulation of solar wind interaction with Mars and comparison with MAVEN observations

Ambipolar electrostatic field in dusty plasma

Formation and evolution of the large-scale magnetic fields in Venus Ionosphere: Results from a 3D global multi-species MHD model

How will the crustal magnetic field affect the tail reconnection process at Mars?

Space Weather Influences on Ion Escape at Venus and Mars and Their Implications

Andrew F Nagy Information

University

Position

Atmospheric and Oceanic Science and Engineering

Citations(all)

19767

Citations(since 2020)

3907

Cited By

17215

hIndex(all)

74

hIndex(since 2020)

30

i10Index(all)

237

i10Index(since 2020)

87

Email

University Profile Page

Google Scholar

Andrew F Nagy Skills & Research Interests

Ionosphere

Plasma Physics

Aeronomy

Top articles of Andrew F Nagy

5‐Species MHD Study of Martian Proton Loss and Source

Journal of Geophysical Research: Space Physics

2023/4

Solar Wind-Mars Interaction Under Different Interplanetary Magnetic Field (IMF) Orientations

AGU Fall Meeting Abstracts

2022/12

Hot electron temperature layer in the Martian atmosphere

Authorea Preprints

2022/11/21

MHD simulation of solar wind interaction with Mars and comparison with MAVEN observations

44th COSPAR Scientific Assembly. Held 16-24 July

2022/7

Ambipolar electrostatic field in dusty plasma

Journal of Plasma Physics

2022/4

Formation and evolution of the large-scale magnetic fields in Venus Ionosphere: Results from a 3D global multi-species MHD model

AGU Fall Meeting Abstracts

2021/12

How will the crustal magnetic field affect the tail reconnection process at Mars?

AGU Fall Meeting Abstracts

2021/12

Space Weather Influences on Ion Escape at Venus and Mars and Their Implications

43rd COSPAR Scientific Assembly. Held 28 January-4 February

2021/1

How does planetary magnetic field impact on Ion escape rate?

AGU Fall Meeting Abstracts

2020/12

Formation and evolution of the large‐scale magnetic fields in Venus' ionosphere: Results from a three dimensional global multispecies MHD model

Geophysical Research Letters

2020/6/16

MHD Predictions of Plasma Conditions Above Insight Landing Site based on MAVEN observations

EGU General Assembly Conference Abstracts

2020/5

See List of Professors in Andrew F Nagy University(University of Michigan)