MYRIAD: A new N-body code for simulations of Star Clusters
Simos Konstantinidis, Kostas D. Kokkotas

TL;DR
MYRIAD is a versatile, modular N-body simulation code for star clusters that combines high accuracy with computational efficiency, capable of modeling complex phenomena like binary evolution and stellar collisions.
Contribution
The paper introduces MYRIAD, a new N-body code that integrates advanced algorithms and hardware acceleration, offering improved accuracy and flexibility over existing simulation tools.
Findings
Core collapse times match previous results within 1% error.
Energy conservation remains below 0.001 throughout simulations.
Code performance is adaptable to different hardware, including GPUs.
Abstract
We present a new C++ code for collisional N-body simulations of star clusters. The code uses the Hermite fourth-order scheme with block time steps, for advancing the particles in time, while the forces and neighboring particles are computed using the GRAPE-6 board. Special treatment is used for close encounters, binary and multiple sub-systems that either form dynamically or exist in the initial configuration. The structure of the code is modular and allows the appropriate treatment of more physical phenomena, such as stellar and binary evolution, stellar collisions and evolution of close black-hole binaries. Moreover, it can be easily modified so that the part of the code that uses GRAPE-6, could be replaced by another module that uses other accelerating-hardware like the Graphics Processing Units (GPUs). Appropriate choice of the free parameters give a good accuracy and speed for…
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