Instanton partition functions on the blow-up are given by chamber-dependent contour integrals over super-partitions selected by stability conditions, yielding explicit wall-crossing formulas that recover the Nakajima-Yoshioka blow-up formula.
Towards the glueball spectrum from unquenched latticeQCD
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Glueballs acquire mass from the interactions of color charges carried by their constituent gluons, providing a unique laboratory for studying mass generation in quantum chromodynamics.
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Wall-crossing of Instantons on the Blow-up
Instanton partition functions on the blow-up are given by chamber-dependent contour integrals over super-partitions selected by stability conditions, yielding explicit wall-crossing formulas that recover the Nakajima-Yoshioka blow-up formula.
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Mass creation by the strong interaction: Glueballs -- status and perspectives
Glueballs acquire mass from the interactions of color charges carried by their constituent gluons, providing a unique laboratory for studying mass generation in quantum chromodynamics.