What is the temperature of a granular medium?
A. Baldassarri, A. Barrat, G. D’Anna, V. Loreto, P. Mayor and A. Puglisi
Jour. Phys.: Condens. Matter, 17 S2405 (2005).
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Observing Brownian motion and measuring temperatures in vibration-fluidized granular matter
P. Mayor, G. D’Anna, A.Barrat and V. Loreto
New Jour. of Phys., 7 28 (2005).
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Temperature probes in binary granular gases
A.Barrat, V. Loreto and A. Puglisi
Physica A, 334 513 (2004).
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Observing Brownian motion in vibro-fluidized granular matter
G. D’Anna, P. Mayor, A.Barrat, V. Loreto and F. Nori,
Nature, 424 909 (2003).
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Extreme events driven glassy behaviour in granular media
G. D’Anna, G. Grémaud, P. Mayor, A.Barrat and V. Loreto,
Europhys. Lett., 61 60 (2003).
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Fluctuation-dissipation relations in 2D driven granular gases
A. Puglisi, A. Baldassarri and V. Loreto,
Phys. Rev., 66 061305 (2002).
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Fluctuation-dissipation ratio for compacting granular media
A. Barrat, V. Colizza and V. Loreto,
Phys. Rev. E, 66 011310 (2002).
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Definition of temperature in dense granular media
V. Colizza, A. Barrat and V. Loreto,
Phys. Rev. E Rapid Communication, 65 050301 (2002).
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Memory in aged granular media
A. Barrat and V. Loreto,
Europhys. Lett., 53 297 (2001).
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Edwards’ measures: a thermodynamic construction for dense granular media and glasses
A. Barrat, J. Kurchan, V. Loreto and M. Sellitto,
Phys. Rev. E, 63 051301 (2001).
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Coarsening and slow dynamics in granular compaction
A. Baldassarri, V. Loreto and S. Krishnamurthy,
Phys. Rev. Lett., 87 224301-1 (2001).
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Edwards’ measures for powders and glasses
A. Barrat, J. Kurchan, V. Loreto and M. Sellitto,
Phys. Rev. Lett., 85 5034 (2000).
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Response properties in a model for granular matter
A. Barrat and V. Loreto,
J. Phys. A: Math. and Gen., 33 4401 (2000).
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Response properties in a model for granular matter
A. Barrat and V. Loreto,
J. Phys. A: Math. and Gen., 33 4401 (2000).
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Criticality of the “critical state” of granular media: dilatancy angle in the Tetris model
M. Piccioni, V. Loreto and S. Roux,
Phys. Rev. E, 61 2813 (2000).
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Bubbling and large-scale structures in avalanche dynamics
S. Khrishnamurthy, V. Loreto and S. Roux,
Phys. Rev. Lett., 84 1039 (2000).
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Kinetic approach to granular gases
A. Puglisi, V. Loreto, U. Marini Bettolo and A. Vulpiani,
Phys. Rev. E, 59 5582 (1999).
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Self-structuring of granular media under internal avalanching
S. Khrishnamurthy, V. Loreto, H.J. Herrmann, S.S. Manna and S. Roux,
Phys. Rev. Lett., 83 304 (1999).
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Internal avalanches in granular packings
S. Khrishnamurthy, V. Loreto, H.J. Herrmann and M. Nicodemi,
Fractals, 751 (1999).
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Entropy for relaxation dynamics in granular media
E. Caglioti and V. Loreto,
Phys. Rev. Lett., 83 4333 (1999).
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Shock propagation in a granular chain
E. Hascoet, H.J. Herrmann and V. Loreto,
Phys. Rev. E, 59 3202 (1999).
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Cooperative lenght approach for granular media
E. Caglioti, A. Coniglio, H.J. Herrmann, V. Loreto and M. Nicodemi,
Physica A, 265 311 (1999).
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Granular gases: where standard kinetic theory fails
A. Puglisi, V. Loreto, U. Marini Bettolo, A. Petri and A. Vulpiani,
INFM Highlights, 1989/1999.
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Clustering and non-gaussian behavior in granular matter
A. Puglisi, V. Loreto, U. Marini Bettolo, A. Petri and A. Vulpiani,
Phys. Rev. Lett., 81 3848 (1998).
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Segregation of granular mixtures in presence of compaction
E. Caglioti, A. Coniglio, H.J. Herrmann, V. Loreto and M. Nicodemi,
Europhys. Lett., 43 591 (1998).
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A “Tetris-like” model for the compaction of dry granular media
E. Caglioti, V. Loreto, H.J. Herrmann and M. Nicodemi,
Phys. Rev. Lett., 79 1575 (1997).
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