Journal of High Energy Physics 2016.7 (2016): 021 reproduced by permission of Scuola Internazionale Superiore di Studi Avanzati (SISSA)Low scale string models naturally have axion-like pseudoscalars which couple directly to gluons and photons (but not W’s) at tree level. We show how they typically get tree level masses in the presence of closed string fluxes, consistent with the axion discrete gauge symmetry, in a way akin of the axion monodromy of string inflation and relaxion models. We discuss the possibility that the hints for a resonance at 750 GeV recently reported at ATLAS and CMS could correspond to such a heavy axion state (megaxion). Adjusting the production rate and branching ratios suggest the string scale to be of order Ms ≈ 7–...
It is pointed out that there exist a few problems to be overcome toward an observable sub-meV QCD ax...
AbstractWe investigate light massive string states that appear at brane intersections. They replicat...
The 750-760 GeV diphoton resonance may be identified as one or two scalars and/or one or two pseudos...
We show that low-mass-scale string compactifications, with a generic D-brane configuration that real...
Motivated by the recent update on LHC searches for narrow and broad resonances decaying into diphoto...
Motivated by the recent update on LHC searches for narrow and broad resonances decaying into diphoto...
AbstractMotivated by the recent update on LHC searches for narrow and broad resonances decaying into...
Abstract: We study models in which the 750 GeV diphoton excess is due to a scalar decaying to two ps...
AbstractWe show that low-mass-scale string compactifications, with a generic D-brane configuration t...
AbstractRecently the ATLAS and CMS Collaborations at the LHC announced their observation of a potent...
AbstractThe ATLAS and CMS Collaborations recently presented evidence of a resonance decaying to pair...
We propose that the 750 GeV resonance, presumably observed in the early LHC Run 2 data, could be a h...
AbstractWe propose that the 750 GeV resonance, presumably observed in the early LHC Run 2 data, coul...
We consider the possibility that the diphoton excess at 750 GeV is caused by a new scalar resonance ...
It is pointed out that there exist a few problems to be overcome toward an observable sub-meV QCD ax...
AbstractWe investigate light massive string states that appear at brane intersections. They replicat...
The 750-760 GeV diphoton resonance may be identified as one or two scalars and/or one or two pseudos...
We show that low-mass-scale string compactifications, with a generic D-brane configuration that real...
Motivated by the recent update on LHC searches for narrow and broad resonances decaying into diphoto...
Motivated by the recent update on LHC searches for narrow and broad resonances decaying into diphoto...
AbstractMotivated by the recent update on LHC searches for narrow and broad resonances decaying into...
Abstract: We study models in which the 750 GeV diphoton excess is due to a scalar decaying to two ps...
AbstractWe show that low-mass-scale string compactifications, with a generic D-brane configuration t...
AbstractRecently the ATLAS and CMS Collaborations at the LHC announced their observation of a potent...
AbstractThe ATLAS and CMS Collaborations recently presented evidence of a resonance decaying to pair...
We propose that the 750 GeV resonance, presumably observed in the early LHC Run 2 data, could be a h...
AbstractWe propose that the 750 GeV resonance, presumably observed in the early LHC Run 2 data, coul...
We consider the possibility that the diphoton excess at 750 GeV is caused by a new scalar resonance ...
It is pointed out that there exist a few problems to be overcome toward an observable sub-meV QCD ax...
AbstractWe investigate light massive string states that appear at brane intersections. They replicat...
The 750-760 GeV diphoton resonance may be identified as one or two scalars and/or one or two pseudos...