International Summer Institute for Modeling in Astrophysics
Parent: Department of Astronomy and Astrophysics
eScholarship stats: Breakdown by Item for May through August, 2026
| Item | Title | Total requests | Download | View-only | %Dnld |
|---|---|---|---|---|---|
| 66c9t3c5 | Production of Elephant Trunks in HII Regions by Radiation-Magnetohydrodynamic Instabilities | 211 | 99 | 112 | 46.9% |
| 9kz418gf | Sweet-Parker Reconnection with Anomalous Resistivity — A Toy Model | 179 | 55 | 124 | 30.7% |
| 0bx48606 | Planetary dynamics in collisional particle disks | 169 | 37 | 132 | 21.9% |
| 4057c3wc | The role of radiation pressure in the dynamics of HII regions at z>1 | 155 | 37 | 118 | 23.9% |
| 06k8s8bw | Destroying resonance between Neptune and its resonant Kuiper Belt Objects by stochastic planetesimal scatterings | 147 | 37 | 110 | 25.2% |
| 96m3847f | Analytical studies of fragmentation during gravitational collapse | 135 | 41 | 94 | 30.4% |
| 6t8022wn | Thermohaline mixing with the small Peclet number approximation | 130 | 35 | 95 | 26.9% |
| 3rw147jx | Stoked Dynamos | 124 | 41 | 83 | 33.1% |
| 7n09f14x | Improving the grain growth model in the outer part of circumstellar disks | 121 | 34 | 87 | 28.1% |
| 0r71s3v9 | Detecting the earliest stages of giant planet formation in scattered light | 119 | 48 | 71 | 40.3% |
| 1kt0k72g | Convectively generated zonal jets by thunderstorms on Jupiter | 119 | 25 | 94 | 21.0% |
| 0xc2c5w6 | Multi-phase turbulent ISM: Theory Confronting Observations | 118 | 38 | 80 | 32.2% |
| 7f43z58p | Day-night cold traps for TiO in hot Jupiter atmospheres | 113 | 51 | 62 | 45.1% |
| 54m812j0 | The orbital decay of a retrograde planet in a protoplanetary disk | 112 | 42 | 70 | 37.5% |
| 3813j8hb | Abundance and evolution of gas around Beta Pictoris | 108 | 38 | 70 | 35.2% |
| 1jx495sk | Singular tidal modes and the regularization of the tidal singularity | 106 | 28 | 78 | 26.4% |
| 35s753p6 | Disk Dynamos in Simulations of Collapsing Cores | 104 | 42 | 62 | 40.4% |
| 2jw7q6mj | MHD jet propagation in the case of DG Tau | 100 | 31 | 69 | 31.0% |
| 4707m4sx | Ohmic dissipation in hot Jupiters | 100 | 42 | 58 | 42.0% |
| 6pp4m4hj | Searching for radiative instabilites in massive star envelopes | 100 | 34 | 66 | 34.0% |
| 8618016r | Spin-down of protostars through gravitational torques | 100 | 28 | 72 | 28.0% |
| 80f7f71k | Fragmentation of metal-poor star-forming cores | 99 | 38 | 61 | 38.4% |
| 5ff523wv | Taming jets in magnetised fluids | 98 | 43 | 55 | 43.9% |
| 73q3t00z | Geostrophic turbulence with a magnetic field | 98 | 35 | 63 | 35.7% |
| 3p74t14x | A simple model for understanding the day-night temperature constrast on Hot Jupiters | 96 | 35 | 61 | 36.5% |
| 4461g8gh | Gap formation in transitional and pre-transitional disks: dust filtration in the presence of coagulation and fragmentation. | 96 | 23 | 73 | 24.0% |
| 4v42t9t6 | Planetesimal formation: shear instabilities at the dust-rich mid-plane | 96 | 21 | 75 | 21.9% |
| 7m77v9sd | Charge exchange in the colliding winds of Hot Jupiters and their host stars | 91 | 34 | 57 | 37.4% |
| 7d34p4sr | Radiative Rayleigh-Taylor instabilities | 84 | 27 | 57 | 32.1% |
| 375312sn | Planet migration in self-gravitating disks | 79 | 23 | 56 | 29.1% |
| 3bt2d4tq | The Sun's meridional circulation and interior magnetic field | 58 | 24 | 34 | 41.4% |
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