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Global simulations of protoplanetary disks with ohmic resistivity and ambipolar diffusion
Oliver Gressel, Neal J. Turner, Richard P. Nelson, Colin P. McNally
Astrophysics and Planetary Science
157
Citations (Scopus)
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Dive into the research topics of 'Global simulations of protoplanetary disks with ohmic resistivity and ambipolar diffusion'. Together they form a unique fingerprint.
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Physics & Astronomy
ambipolar diffusion
100%
protoplanetary disks
93%
electrical resistivity
47%
simulation
28%
ionization
22%
shearing
22%
boxes
20%
Hall effect
19%
T Tauri stars
13%
polarity
10%
planets
9%
chemistry
9%
angular momentum
8%
vapor phases
8%
symmetry
6%
approximation
5%
magnetic fields
5%
ions
5%
x rays
4%
electrons
4%
Earth & Environmental Sciences
electrical resistivity
63%
ionization
55%
simulation
32%
angular momentum
23%
recombination
20%
global model
20%
symmetry
17%
accretion
17%
planet
16%
magnetic field
16%
electron
13%
ion
11%
gas
9%
effect
8%
rate
6%