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1、VOLUME84,NUMBER13PHYSICALREVIEWLETTERS27MARCH2000StructuresofHigh-DensityandLow-DensityWaterAlanK.Soper*ISISFacility,RutherfordAppletonLaboratory,Chilton,Didcot,OxonOX110QX,UnitedKingdomMariaAntoniettaRicciDipartimentodiFisica“E.Amaldi,”Universita’diRomaTre,IstitutoNazionalepe
2、rlaFisicadellaMateria,Unita’diRomaTre,viadellaVascaNavale84,00146-Roma,Italy(Received12November1999)Thethreesite-sitepartialstructurefactorsforwaterhavebeenmeasuredasafunctionofpressure,usingneutrondiffraction,atatemperatureof268K.Itisfoundthatthemeasuredstructurefunc-tionsimp
3、lyacontinuoustransformationwithincreasingpressurefromalow-densityformofwater(r0.0295moleculesÅ3),withanopen,hydrogen-bondedtetrahedralstructure,toahigh-densityLformofwater(r0.0402moleculesÅ3),withnontetrahedralO-O-Oanglesandacollapsedsec-Hondcoordinationshell,whichimpliesb
4、rokenhydrogenbondsbetweenthefirstandsecondcoordina-tionshells.PACSnumbers:61.20.Qg,61.12.–q,61.25.–fThreedifferentconjectureshavebeenproposedoverthemationinliquidwater,andtouncoverthelocalmolecu-lastdecadetoaccountforthephasebehaviorofmetastablelararrangementsthatoccurintheset
5、woformsofwater.wateratlowtemperature.ThesearetheretracingspinodalNeutrondiffractionexperimentsoncompressedwater,[1,2],thesecondcriticalpoint[3–7],andthesingularityusingisotopesubstitutiononthewaterhydrogens,werefreescenarios[8,9].Anotherrecentmodelshowsthatbothperformedinatemp
6、eratureregimewheretheanomalousthesecondcriticalpointandsingularityfreescenarioscanpropertiesofwateraremostvisible[17,18],namelybereproducedbyachangeinthestrengthofthehydrogenclosetotheiceI/iceIIItriplepoint(T251K,bondinginteractioninthemodel[10].ThefirstconjectureP209MPa),si
7、ncethisisthelowesttemperatureatimpliesanomalousincreasesoftheresponsefunctionsinwhichwaterisastableliquid.Thetemperaturechosentheproximityofthespinodalcurve,thesecondassumesthewasslightlyabovethis,268K,sothatthestructuraltrendexistenceofafirstordertransitionbetweentwodifferent
8、asafunctionpressure(26,209,and400MPa,correspond-formsofliquid