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The 3+1-dimensional Einstein-Hilbert action is obtained from the 1-loop effective action on noncommutative branes in the IIB or IKKT matrix model.
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J. Nishimura and A. Tsuchiya, “Complex Langevin analysis of the space-time structure in the Lorentzian type IIB matrix model,” JHEP 06
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Later among the works it cites.
H. C. Steinacker, “Emergent gravity on covariant quantum spaces in the IKKT model,” JHEP 12
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Later among the works it cites.
2018
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H. C. Steinacker, “Quantized open FRW cosmology from Yang-Mills matrix models,” Phys. Lett. B 782
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M. Sperling and H. C. Steinacker, “Covariant cosmological quantum space-time, higher-spin and gravity in the IKKT matrix model,” JHEP 07
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H. Aoki, J. Nishimura and A. Tsuchiya, “Realizing three generations of the Standard Model fermions in the type IIB matrix model,” JHEP 05
2014
Cited alongside, same era.
H. C. Steinacker, “One-loop stabilization of the fuzzy four-sphere via softly broken SUSY,” JHEP 12
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J. Heckman and H. Verlinde, “Covariant non-commutative space–time,” Nucl. Phys. B 894
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H. C. Steinacker, “Higher-spin gravity and torsion on quantized space-time in matrix models,” JHEP 04
2020
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K. N. Anagnostopoulos, T. Azuma, Y. Ito, J. Nishimura, T. Okubo and S. Kovalkov Papadoudis, “Complex Langevin analysis of the spontaneous breaking of 10D rotational symmetry in the Euclidean IKKT matrix model,” JHEP 06
2020
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S. Fredenhagen and H. C. Steinacker, “Exploring the gravity sector of emergent higher-spin gravity: effective action and a solution,” JHEP 05
2021
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