Most, if not all, young stars are initially surrounded by protoplanetary disks. Owing to the preferential formation of stars in stellar clusters, the protoplanetary disks around these stars may potentially be affected by the cluster environment. Various works have investigated the influence of stellar fly-bys on disks, although many of them consider only the effects due to parabolic, coplanar encounters often for equal-mass stars, which is only a very special case. We perform numerical simulations to study the fate of protoplanetary disks after the impact of parabolic star-disk encounter for the less investigated case of inclined up to coplanar, retrograde encounters, which is a much more common case. Here, we concentrate on the disk size a...
Most stars form in a clustered environment. Therefore, it is important to assess how this environmen...
Received; accepted Aims. Investigations of stellar encounters in cluster environments have demonstra...
Theoretical investigations show that planet-disk interactions cause structures in circumstellar disk...
Most stars do not form in isolation, but as part of a star cluster or association. These young stars...
Interactions between disc-surrounded stars might play a vital role in the formation of planetary sys...
Interactions between disc-surrounded stars might play a vital role in the formation of planetary sy...
Current observations from ALMA have identified unique features in protoplanetary discs around young ...
Simulations of the collapse and fragmentation of turbulent molecular clouds and dense young cluste...
Most stars form and spend their early life in regions of enhanced stellar density. Therefore the evo...
The study of planet formation has become progressively more important in the last few years given th...
Stars are born from clouds of gas and dust that collapse under gravity. Both direct and indirect obs...
The majority of stars form in a clustered environment. This has an impact on the evolution of surrou...
Most stars form in a cluster environment. These stars are initially surrounded by disks from which p...
Protoplanetary disks, the birth places of planets, are rotating disks of dust and gas surrounding st...
Protoplanetary disk surveys by ALMA are now probing a range of environmental conditions, from low-ma...
Most stars form in a clustered environment. Therefore, it is important to assess how this environmen...
Received; accepted Aims. Investigations of stellar encounters in cluster environments have demonstra...
Theoretical investigations show that planet-disk interactions cause structures in circumstellar disk...
Most stars do not form in isolation, but as part of a star cluster or association. These young stars...
Interactions between disc-surrounded stars might play a vital role in the formation of planetary sys...
Interactions between disc-surrounded stars might play a vital role in the formation of planetary sy...
Current observations from ALMA have identified unique features in protoplanetary discs around young ...
Simulations of the collapse and fragmentation of turbulent molecular clouds and dense young cluste...
Most stars form and spend their early life in regions of enhanced stellar density. Therefore the evo...
The study of planet formation has become progressively more important in the last few years given th...
Stars are born from clouds of gas and dust that collapse under gravity. Both direct and indirect obs...
The majority of stars form in a clustered environment. This has an impact on the evolution of surrou...
Most stars form in a cluster environment. These stars are initially surrounded by disks from which p...
Protoplanetary disks, the birth places of planets, are rotating disks of dust and gas surrounding st...
Protoplanetary disk surveys by ALMA are now probing a range of environmental conditions, from low-ma...
Most stars form in a clustered environment. Therefore, it is important to assess how this environmen...
Received; accepted Aims. Investigations of stellar encounters in cluster environments have demonstra...
Theoretical investigations show that planet-disk interactions cause structures in circumstellar disk...