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J. M. Carmona

Researcher at University of Zaragoza

Publications -  202
Citations -  6219

J. M. Carmona is an academic researcher from University of Zaragoza. The author has contributed to research in topics: Axion & CERN Axion Solar Telescope. The author has an hindex of 34, co-authored 191 publications receiving 5280 citations. Previous affiliations of J. M. Carmona include University of Pisa & European Atomic Energy Community.

Papers
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Conceptual Design of the International Axion Observatory (IAXO)

Eric Armengaud, +87 more
TL;DR: The International Axion Observatory (IAXO) as discussed by the authors is the most powerful axion helioscope to date in terms of signal-to-noise ratio, reaching sensitivity to axion-photon couplings down to a few times 10 − 12 − 1 − 2 GeV$ − 1 /ε − 1/ε 2 ) and thus probing a large fraction of the currently unexplored axion and ALP parameter space.
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Improved search for solar chameleons with a GridPix detector at CAST

Vassilis Anastassopoulos, +71 more
TL;DR: In this paper, a new search for solar chameleons with the CERN Axion Solar Telescope (CAST) was reported, where a GridPix detector was used to search for soft X-ray photons in the energy range from 200 eV to 10 keV from converted solar CHs.
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Transient backbending behavior in the Ising model with fixed magnetization.

TL;DR: Looking at the convexity anomalies of the IMFM thermodynamic potential, it is shown that the order of the transition at the thermodynamic limit can be recognized in finite systems independently of the lattice size.
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Effect of suprathermal electrons on the impurity ionization state

TL;DR: In this paper, the effect of electron cyclotron resonance heating induced suprathermal electron tails on the ionization of iron impurities in magnetically confined plasmas is investigated.
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Spacetime from locality of interactions in deformations of special relativity: The example of κ -Poincaré Hopf algebra

TL;DR: In this article, a new proposal for the notion of spacetime in a relativistic generalization of special relativity based on a modification of the composition law of momenta is presented.