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On the Progress of models and simulations of giant planet formation

On the Progress of models and simulations of giant planet formation. Física del Sistema Solar, 2012 Sara Bertrán de Lis. Modelo “ Core Accretion ”. Colapso nube densa gas. Protoestrella + disco. “coagulación” polvo. + colisiones/inest. planetesimales. + colisiones.

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On the Progress of models and simulations of giant planet formation

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  1. On the Progress of models and simulations of giant planet formation Física del Sistema Solar, 2012Sara Bertrán de Lis

  2. Modelo “Core Accretion” Colapso nube densa gas Protoestrella + disco “coagulación” polvo + colisiones/inest. planetesimales + colisiones protoplanetas = núcleo sólido Pollack et al. 1996 planeta gaseoso planeta terrestre

  3. Modelos extendidos • - Tasas acreción • Ecuaciones estado • Patrones densidad en disco • Opacidad: de MI a granos en envolturas • - Evolución del disco protoplanetario • Migración planetaria (“Hot Jupiters”) Observaciones Síntesis población con simulaciones Monte Carlo Modelos

  4. Modelo extendido + Monte Carlo • - Cociente gas/polvo • Densidad sup. inicial gas • Tasa fotoevaporación • Semieje mayor inicial Parámetros iniciales “cruciales” Distribuciones probabilidad Set Cond. iniciales Parámetros fijos: tamaño disco, fracción helio, datos núcleos, ect. Evol. Temporal y prop. finales • Evol. Estructura vertical disco • Evolución densidad sup. Disco gas • Tasa migración • Evolución planetesimales • Interacción planetesimal – atmosfera protoplanetaria • Estructura y evolución protoplaneta Modelo

  5. Resultados modelo extendido I Mordasini et al. 2009

  6. N-body + disk model Thommes et al. 2008

  7. MESS: Multi-purpose Exop Simulation System Bonavita et al. 2011

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