Close-in super-Earths are the most abundant exoplanets known. It has been hypothesized that they form in the inner regions of protoplanetary discs, out of the dust that may accumulate at the boundary between the inner region susceptible to the magneto-rotational instability (MRI) and an MRI-dead zone further out. In Paper I, we presented a model for the viscous inner disc which includes heating due to both irradiation and MRI-driven accretion; thermal and non-thermal ionization; dust opacities; and dust effects on ionization. Here, we examine how the inner disc structure varies with stellar, disc, and dust parameters. For high accretion rates and small dust grains, we find that: (1) the main sources of ionization are thermal ionization and ...
Observations have revealed that super-Earths (planets up to 10 Earth masses) are the most abundant t...
Aims. Accretion bursts triggered by the magnetorotational instability (MRI) in the innermost disk re...
Most planets discovered by Kepler are super-Earths with small gaseous atmospheres, showing that they...
Close-in super-Earths are the most abundant exoplanets known. It has been hypothesized that they for...
Short-period super-Earth-sized planets are common. Explaining how they form near their present orbit...
We explore in situ formation and subsequent evolution of close-in super-Earths and mini-Neptunes. We...
Among the extrasolar planets discovered so far, the most abundant are the close-in super-Earths. The...
The ubiquity of Earth to super-Earth sized planets found very close to their host stars has motivate...
Do the ubiquitous short-period super-Earths/mini-Neptunes form in situ, in the inner protoplanetary ...
Do the ubiquitous short-period super-Earths/mini-Neptunes form in situ, in the inner protoplanetary ...
A newborn star is encircled by a remnant disc of gas and dust. A fraction of the disc coalesces into...
Context. The transition between magnetorotational instability (MRI)-active and magnetically dead reg...
Inside-out planet formation (IOPF) proposes that the abundant systems of close-in Super-Earths and M...
Observations have revealed that super-Earths (planets up to 10 Earth masses) are the most abundant t...
Most planets discovered by Kepler are super-Earths with small gaseous atmospheres, showing that they...
Observations have revealed that super-Earths (planets up to 10 Earth masses) are the most abundant t...
Aims. Accretion bursts triggered by the magnetorotational instability (MRI) in the innermost disk re...
Most planets discovered by Kepler are super-Earths with small gaseous atmospheres, showing that they...
Close-in super-Earths are the most abundant exoplanets known. It has been hypothesized that they for...
Short-period super-Earth-sized planets are common. Explaining how they form near their present orbit...
We explore in situ formation and subsequent evolution of close-in super-Earths and mini-Neptunes. We...
Among the extrasolar planets discovered so far, the most abundant are the close-in super-Earths. The...
The ubiquity of Earth to super-Earth sized planets found very close to their host stars has motivate...
Do the ubiquitous short-period super-Earths/mini-Neptunes form in situ, in the inner protoplanetary ...
Do the ubiquitous short-period super-Earths/mini-Neptunes form in situ, in the inner protoplanetary ...
A newborn star is encircled by a remnant disc of gas and dust. A fraction of the disc coalesces into...
Context. The transition between magnetorotational instability (MRI)-active and magnetically dead reg...
Inside-out planet formation (IOPF) proposes that the abundant systems of close-in Super-Earths and M...
Observations have revealed that super-Earths (planets up to 10 Earth masses) are the most abundant t...
Most planets discovered by Kepler are super-Earths with small gaseous atmospheres, showing that they...
Observations have revealed that super-Earths (planets up to 10 Earth masses) are the most abundant t...
Aims. Accretion bursts triggered by the magnetorotational instability (MRI) in the innermost disk re...
Most planets discovered by Kepler are super-Earths with small gaseous atmospheres, showing that they...