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Revision 3257 by chuckv, Fri Oct 12 18:21:58 2007 UTC vs.
Revision 3258 by chuckv, Fri Oct 12 20:19:11 2007 UTC

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1  
2 < %% Created for Charles Vardeman at 2007-10-12 14:03:14 -0400
2 > %% Created for Charles Vardeman at 2007-10-12 16:20:15 -0400
3  
4  
5   %% Saved with string encoding Western (ASCII)
6  
7  
8  
9 + @article{Greer:1995qy,
10 +        Abstract = {Amorphous metallic alloys, relative newcomers to the world of glasses, have properties that are unusual for solid metals. The metallic glasses, which exist in a very wide variety of compositions, combine fundamental interest with practical applications. They also serve as precursors for exciting new nanocrystalline materials. Their magnetic (soft and hard) and mechanical properties are of particular interest.},
11 +        Author = {Greer, A. Lindsay},
12 +        Copyright = {Copyright 1995 American Association for the Advancement of Science},
13 +        Date-Added = {2007-10-12 16:17:37 -0400},
14 +        Date-Modified = {2007-10-12 16:20:00 -0400},
15 +        Group = {Frontiers in Materials Science},
16 +        Issn = {0036-8075},
17 +        Journal = {Science},
18 +        Jstor_Articletype = {Full Length Article},
19 +        Jstor_Date = {19950331},
20 +        Jstor_Formatteddate = {Mar. 31, 1995},
21 +        Local-Url = {file://localhost/Users/charles/Documents/Papers/greer_science_met_glass.pdf},
22 +        Month = {mar},
23 +        Number = {5206},
24 +        Pages = {1947--1953},
25 +        Publisher = {American Association for the Advancement of Science},
26 +        Series = {3},
27 +        Title = {Metallic Glasses},
28 +        Url = {http://links.jstor.org/sici?sici=0036-8075%2819950331%293%3A267%3A5206%3C1947%3AMG%3E2.0.CO%3B2-T},
29 +        Volume = {267},
30 +        Year = {1995}}
31 +
32 + @misc{Debenedetti:2001lr,
33 +        Abstract = {Glasses are disordered materials that lack the periodicity of crystals but behave mechanically like solids. The most common way of making a glass is by cooling a viscous liquid fast enough to avoid crystallization. Although this route to the vitreous state - supercooling - has been known for millennia, the molecular processes by which liquids acquire amorphous rigidity upon cooling are not fully understood. Here we discuss current theoretical knowledge of the manner in which intermolecular forces give rise to complex behaviour in supercooled liquids and glasses. An intriguing aspect of this behaviour is the apparent connection between dynamics and thermodynamics. The multidimensional potential energy surface as a function of particle coordinates (the energy landscape) offers a convenient viewpoint for the analysis and interpretation of supercooling and glass-formation phenomena. That much of this analysis is at present largely qualitative reflects the fact that precise computations of how viscous liquids sample their landscape have become possible only recently.},
34 +        Author = {Debenedetti, PG and Stillinger, FH},
35 +        Date-Added = {2007-10-12 16:08:35 -0400},
36 +        Date-Modified = {2007-10-12 16:08:56 -0400},
37 +        Local-Url = {file://localhost/Users/charles/Documents/Papers/410259a0.pdf},
38 +        Note = {Nature},
39 +        Pages = {259-267},
40 +        Title = {Supercooled liquids and the glass transition},
41 +        Volume = {410},
42 +        Year = {2001}}
43 +
44   @article{PhysRevE.64.016128,
45          Author = {Corti, David S.},
46          Date-Added = {2007-10-12 14:01:52 -0400},
# Line 2550 | Line 2585
2585                  <string>Cu-Ag-Au clusters-theory</string>
2586                  <key>keys</key>
2587                  <string>cheng:064117,rapallo:194308,Chushak:2001ry,Breaux:rz,luo:145502,ganesh-2006-,rossi:105503,Hu:2005lr,Chen:2004ec</string>
2588 +        </dict>
2589 +        <dict>
2590 +                <key>group name</key>
2591 +                <string>Glass Behavior</string>
2592 +                <key>keys</key>
2593 +                <string>Greer:1995qy,Debenedetti:2001lr</string>
2594          </dict>
2595          <dict>
2596                  <key>group name</key>
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2638                  <key>group name</key>
2639                  <string>NPT Langevin</string>
2640                  <key>keys</key>
2641 <                <string>calvo:125414,Kohanoff:2005,0953-8984-18-39-037,0031-9155-41-9-016,Buscaglia:1997fk,0953-8984-14-26-101,Baltazar:2006lr</string>
2641 >                <string>calvo:125414,Kohanoff:2005,0953-8984-18-39-037,0031-9155-41-9-016,Buscaglia:1997fk,0953-8984-14-26-101,Baltazar:2006lr,PhysRevE.64.016128</string>
2642          </dict>
2643          <dict>
2644                  <key>group name</key>

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