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Metamaterials with negative compressibility are a very promising group of novel materials with a wide variety of potential application. A recent model proposed construction of the structures with three-dimensional negative compressibility by utilizing successive destabilization of stable or metastable states and inducing phase transitions mimicking negative compressibility. Here, we would like to show that similar concept is used by the nature and a nice example of this kind of metamaterial can be seen even in a glass of water.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
126--129
Opis fizyczny
Bibliogr. 28 poz., wykr., tab.
Twórcy
autor
- MTA Centre for Energy Research, POB 49, H-1525, Budapest, Hungary
Bibliografia
- [1] CHEN H., CHAN C.T., SHENG P., Nat. Mater., 9 (2010), 387.
- [2] LAKES R., Science, 288 (2000), 1976.
- [3] WHEELER L., GUO C.Y., J. Mech. Mater. Struct., 2 (2007), 1471.
- [4] MARUSZEWSK B.T., DRZEWIECKI A., STAROSTA R., RESTUCCIA L., J. Mech. Mater. Struct., 8 (2013), 403.
- [5] LAKES R., WOJCIECHOWSKI K.W., Phys. Status Solidi B, 245 (2008), 545.
- [6] GATT R., GRIMA J.N., Phys. Status Solidi-R, 2 (2008), 236.
- [7] DEBENEDETTI P.G., Metastable Liquids: Concepts and Principles, Princeton University Press, Princeton, 1996.
- [8] BAUGHMAN R.H.,STAFTSTROM S., CUI C., DANTAS S., Science, 279 (1998), 1522.
- [9] BARNES D.L., MILLER W., EVANS K.E., MARMIER A., Mech. Mater., 46 (2012), 123.
- [10] GATT R., CARAUNA-GAUCI R., GRIMA J.N., Nat. Mater., 12 (2013), 182.
- [11] BISHOP M., UHOYA W., TSOI G., VOHRA Y.K., FEFAT A.S., SALES B.C., J. Phys.-Condens. Mat., 22 (2010), 425701.
- [12] NICOLAOU Z.G., MOTTER A.L., Nat. Mater., 11 (2012), 608.
- [13] GRIMA J.N., CARAUNA-GAUCI R., Nat. Mater., 11 (2012), 566.
- [14] IMRE A.R., DROZD-RZOSKA A., KRASKA T.,RZOSKA S.J., WOJCIECHOWSKI K.W., J. Phys.-Condens. Mat., 20 (2008), 244104.
- [15] VAN DER WAALS J.D., Over de Continuiteit van den Gas – en Vloeistoftoestand (On the continuity of the gas and liquid state), PhD thesis, Leiden, The Netherlands, 1873.
- [16] THOMSON J., P. Roy. Soc., 20 (1871 – 1872), 1.
- [17] IMRE A.R., MARIS H.J., WILLIAMS P.R., (Eds.), Liquids under Negative Pressure, NATO Science Series, Kluwer, Dordrecht, 2002.
- [18] EL MEKKI-AZOUZIL M., RAMBOZ C., LENAIN J.F., CAUPIN F., Nat. Phys., 9 (2013), 38.
- [19] AGUILAR-PINEDA G.E., JIMENEZ-ANGELES F., YU J., LOZADA-CASOU M., J. Phys. Chem. B, 111 (2007), 2033.
- [20] VAN DER WAALS J.D., Verhand. Kon. Akad. Wetensch. Amst. Sec. 1, 1893 (in Dutch; English translation in: J. Stat. Phys., 21 (1979), 197).
- [21] BAKKER G., Handbuch der Experimentalphysik; Wien, in: F. Harms, H. Lenz (Eds.), Akad. Verlagsges, Leipzig, 1928.
- [22] IMRE A.R., MAYER G., H´AZI G., ROZAS R., KRASKA T., J. Chem. Phys., 128 (2008), 114708.
- [23] IMRE A.R., KRASKA T., Fluid Phase Equilibr., 284 (2009), 31.
- [24] MOORE S.G., WHEELER D.R., J. Chem. Phys., 136 (2012), 164503.
- [25] WERTH S., LISHCHUK S.V., HORSCH M., HASSE H., Physica A, 392 (2013), 2359.
- [26] KRASKA T., R¨OMER F., IMRE A.R., J. Phys. Chem. B, 113 (2009), 4688.
- [27] MAYER G., H´A ZI G., P´ALES J., IMRE A.R., FISCHER B., KRASKA T., Int. J. Mod. Phys. C, 15 (2004), 1049.
- [28] IMRE A.R., BARANYAI A., DEITERS U., KISS P.T.,KRASKA T., QUINONES-CISNEROS S.E., Int. J. Thermophys., 34 (2013), 2053.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3030da8f-d7bc-46a6-918b-729060f695d9