Stick-slip dynamics as a probe of frictional forces
In this letter we investigate the nature of relaxation in a model system which consists of a chain of particles that interact with two periodic potentials which represent two confining plates, one of which is externally driven. We find that the relaxation of the “slip” part between two “stick” event...
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Published in | Europhysics letters Vol. 39; no. 2; pp. 183 - 188 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
IOP Publishing
15.07.1997
EDP Sciences |
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Abstract | In this letter we investigate the nature of relaxation in a model system which consists of a chain of particles that interact with two periodic potentials which represent two confining plates, one of which is externally driven. We find that the relaxation of the “slip” part between two “stick” events in the stick-slip time series may display more than one characteristic time scale. Similar relaxation patterns are observed also in the case of a single particle located between the plates. The different relaxation times are shown to be related to a velocity-dependent effective frictional force felt by the driven plate, and their actual observation is dictated by the experimental conditions. |
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AbstractList | In this letter we investigate the nature of relaxation in a model system which consists of a chain of particles that interact with two periodic potentials which represent two confining plates, one of which is externally driven. We find that the relaxation of the “slip” part between two “stick” events in the stick-slip time series may display more than one characteristic time scale. Similar relaxation patterns are observed also in the case of a single particle located between the plates. The different relaxation times are shown to be related to a velocity-dependent effective frictional force felt by the driven plate, and their actual observation is dictated by the experimental conditions. |
Author | Klafter, J Rozman, M. G Urbakh, M |
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CitedBy_id | crossref_primary_10_1209_epl_i2000_00274_6 crossref_primary_10_1103_PhysRevLett_98_056101 crossref_primary_10_1103_PhysRevLett_92_135503 crossref_primary_10_1103_RevModPhys_85_529 crossref_primary_10_1557_PROC_651_T4_3_1 crossref_primary_10_1103_PhysRevE_57_7340 crossref_primary_10_1152_japplphysiol_00719_2002 crossref_primary_10_1016_j_susc_2007_07_009 crossref_primary_10_1103_PhysRevE_72_056116 crossref_primary_10_1103_PhysRevE_62_4235 crossref_primary_10_1103_PhysRevE_58_1311 crossref_primary_10_1103_PhysRevB_75_155419 crossref_primary_10_1103_PhysRevLett_81_1227 crossref_primary_10_1103_PhysRevLett_81_3904 crossref_primary_10_1103_PhysRevE_60_660 crossref_primary_10_1103_PhysRevE_60_149 crossref_primary_10_1103_PhysRevE_63_017203 crossref_primary_10_1103_PhysRevE_58_2161 crossref_primary_10_1016_j_triboint_2011_02_005 crossref_primary_10_1021_jp981332h crossref_primary_10_1021_jp994285h crossref_primary_10_1103_PhysRevE_76_046603 crossref_primary_10_1007_s11249_007_9196_y crossref_primary_10_1103_PhysRevLett_82_3097 crossref_primary_10_1103_PhysRevE_59_1921 crossref_primary_10_1080_00268970210139958 crossref_primary_10_1088_0953_8984_28_29_293001 crossref_primary_10_1016_S0378_4371_98_00603_7 crossref_primary_10_1063_1_1471242 crossref_primary_10_1088_0953_8984_20_22_224020 crossref_primary_10_1088_0953_8984_19_30_305017 crossref_primary_10_1103_PhysRevB_63_193406 crossref_primary_10_1088_0953_8984_19_30_305016 crossref_primary_10_1103_PhysRevE_63_046110 |
Cites_doi | 10.1126/science.259.5099.1305 10.1103/PhysRevLett.77.683 10.1103/PhysRevE.54.6485 10.1021/la950896z 10.1002/ijch.199500015 10.1103/PhysRevE.53.4153 10.1103/PhysRevB.50.4771 10.1080/00018739600101557 10.1126/science.263.5154.1741 10.1103/RevModPhys.66.657 10.1103/PhysRevE.53.R3005 |
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References | 11 1 2 3 4 5 6 8 9 Thompson P. A. (7) 1995; 35 Rozman M. G. (12) 10 |
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Title | Stick-slip dynamics as a probe of frictional forces |
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