Recently, Kallivayalil et al. derived new values of the proper motion for the Large and Small Magellanic Clouds (LMC and SMC, respectively). The spatial velocities of both Clouds are unexpectedly higher than their previous values resulting from agreement between the available theoretical models of the Magellanic System and the observations of neutral hydrogen (H I) associated with the LMC and the SMC. Such proper motion estimates are likely to be at odds with the scenarios for creation of the large-scale structures in the Magellanic System suggested so far. We investigated this hypothesis for the pure tidal models, as they were the first ones devised to explain the evolution of the Magellanic System, and the tidal stripping is intrinsically...
We use cosmological simulations from the Aquarius Project to study the orbital history of the Large ...
A suite of high-resolution N-body simulations of the Magellanic Clouds-Milky Way system are presente...
International audienceThe Magellanic Clouds are often considered to be outliers in the satellite sys...
Bound orbits have traditionally been assigned to the Large and Small Magellanic Clouds (LMC and SMC,...
We studied the impact of the revisited values for the LSR circular velocity of the Milky Way (Reid e...
International audienceThe prominent Magellanic Stream that dominates the HI sky provides a tantalizi...
The history of the Magellanic Clouds is investigated using N-body hydrodynamic simulations where the...
Motivated by recent studies suggesting that the Large Magellanic Cloud (LMC) could be significantly ...
Motivated by recent studies suggesting that the Large Magellanic Cloud (LMC) could be significantly ...
A combination of analytic models and n-body simulations implies that the structural evolution of the...
A combination of analytic models and n-body simulations implies that the structural evolution of the...
A suite of high-resolution N-body simulations of the Magellanic Clouds-Milky Way system are presente...
We study the dynamics of the Magellanic Clouds in a model for the Local Group whose mass is constrai...
We present a new measurement of the systemic proper motion of the Small Magellanic Cloud (SMC), base...
We use cosmological simulations from the Aquarius Project to study the orbital history of the Large ...
A suite of high-resolution N-body simulations of the Magellanic Clouds-Milky Way system are presente...
International audienceThe Magellanic Clouds are often considered to be outliers in the satellite sys...
Bound orbits have traditionally been assigned to the Large and Small Magellanic Clouds (LMC and SMC,...
We studied the impact of the revisited values for the LSR circular velocity of the Milky Way (Reid e...
International audienceThe prominent Magellanic Stream that dominates the HI sky provides a tantalizi...
The history of the Magellanic Clouds is investigated using N-body hydrodynamic simulations where the...
Motivated by recent studies suggesting that the Large Magellanic Cloud (LMC) could be significantly ...
Motivated by recent studies suggesting that the Large Magellanic Cloud (LMC) could be significantly ...
A combination of analytic models and n-body simulations implies that the structural evolution of the...
A combination of analytic models and n-body simulations implies that the structural evolution of the...
A suite of high-resolution N-body simulations of the Magellanic Clouds-Milky Way system are presente...
We study the dynamics of the Magellanic Clouds in a model for the Local Group whose mass is constrai...
We present a new measurement of the systemic proper motion of the Small Magellanic Cloud (SMC), base...
We use cosmological simulations from the Aquarius Project to study the orbital history of the Large ...
A suite of high-resolution N-body simulations of the Magellanic Clouds-Milky Way system are presente...
International audienceThe Magellanic Clouds are often considered to be outliers in the satellite sys...