tests:collision
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**Working group coordinators: | **Working group coordinators: | ||
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You will find here some challenges based on data from collisional N-body models. These mock data are designed to mimic collisional systems like star/ | You will find here some challenges based on data from collisional N-body models. These mock data are designed to mimic collisional systems like star/ | ||
- | A summary of Gaia Challenge | + | A summary of Gaia Challenge |
- | Mock datasets for all challenges | + | Mock datasets for all challenges can be downloaded [[: |
Additional mock datasets and ideas for new challenges are listed [[: | Additional mock datasets and ideas for new challenges are listed [[: | ||
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- | ===== Goals/ | + | Ideas and goals for the Gaia Challenge |
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- | ===1. Method comparison:=== | + | |
- | Jeans modelling vs. Distribution-function based models | + | |
- | ===2. Understanding Gaia errors:=== | ||
- | What will Gaia actually give us (for GCs, open clusters, runaway stars, hypervelocity stars)? What can we do with TGAS? | ||
+ | Throughout the Gaia Challenge I-III workshops, we have tackled four specific challenges: | ||
- | ===3. Potential escapers:=== | + | **1. Single mass clusters: the interplay of anisotropy and tides (Zocchi et al. in prep)** |
- | a) biases from ignoring them | + | |
- | b) towards self-consistent mixture | + | **2. Clusters with a mass spectrum: testing the validity of multi-mass models |
+ | **3. Observational biases (Sollima et al. 2015)** | ||
- | ===4. Rotation:=== | + | **4. Method comparison: Jeans modelling vs Distribution-function based models** |
- | include prescription for rotation in multi-mass DF models. | + | |
+ | Many of the challenges make use of LIMEPY ([[http:// |
tests/collision.1441027064.txt.gz · Last modified: 2022/10/24 12:10 (external edit)