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Beryllium gaskets suitable for pressures up to 10 GPaMACAVEI, J; SCHULZ, H.Review of scientific instruments. 1990, Vol 61, Num 8, pp 2236-2238, issn 0034-6748, 3 p.Article

The technology of diamond anvil high-pressure cells. I: Principles, design and constructionDUNSTAN, D. J; SPAIN, I. L.Journal of physics. E. Scientific instruments. 1989, Vol 22, Num 11, pp 913-923, issn 0022-3735Article

The technology of diamond anvil high-pressure cells. II: Operation and useSPAIN, I. L; DUNSTAN, D. J.Journal of physics. E. Scientific instruments. 1989, Vol 22, Num 11, pp 923-936, issn 0022-3735Article

Simple diamond anvil cells for cryogenic useADAMS, D. M.Journal of physics. E. Scientific instruments. 1990, Vol 1, Num 1, pp 87-89, issn 0022-3735, 3 p.Article

Pressure generation by a double-stage system using sintered diamond as the last stage anvilBILYALOV, Y. R; KAUROV, A. A; TSVYASHCHENKO, A. V et al.Review of scientific instruments. 1992, Vol 63, Num 4, pp 2311-2314, issn 0034-6748, 1Article

Pressure generation bu sintered diamond multianvilsENDO, S; AKAHAMA, Y; UTSUMI, W et al.Japanese journal of applied physics. 1987, Vol 26, Num 8, pp L1419-L1420, issn 0021-4922, 2Article

Simple device for drilling holes in metal gaskets for diamond anvil cell experimentsSAHU, P. C; THOMASKUTTY, K. V; CHANDRA SHEKAR, N. V et al.Review of scientific instruments. 1993, Vol 64, Num 10, pp 3030-3031, issn 0034-6748Article

Application of Nuclear Quadrupole Resonance with Mini Cubic Anvil ApparatusHIRAYAMA, Kenji; YAMAZAKI, Takehiro; FUKAZAWA, Hideto et al.Journal of the Physical Society of Japan. 2008, Vol 77, Num 7, issn 0031-9015, 075001.1-075001.2Article

High-pressure elastic properties of liquid and solid neon to 7 GPaSHIMIZU, Hiroyasu; IMAEDA, Hiroki; KUME, Tetsuji et al.Physical review B. Condensed matter and materials physics. 2005, Vol 71, Num 1, pp 014108.1-014108.5, issn 1098-0121Article

Melting curve of H2O to 90 GPa measured in a laser-heated diamond cellSCHWAGER, B; CHUDINOVSKIKH, L; GAVRILIUK, A et al.Journal of physics. Condensed matter (Print). 2004, Vol 16, Num 14, pp S1177-S1179, issn 0953-8984Conference Paper

Improved NMR resonator for diamond anvil cellsLEE, S.-H; CONRADI, M. S; NORBERG, R. E et al.Review of scientific instruments. 1992, Vol 63, Num 7, pp 3674-3676, issn 0034-6748Article

Use of Gem-cut cubic zirconia in the Diamond anvil cellPATTERSON, D. E; MARGRAVE, J. L.Journal of physical chemistry (1952). 1990, Vol 94, Num 3, pp 1094-1096, issn 0022-3654Article

X-ray diffraction study of elemental erbium to 70 GPaPRAVICA, Michael G; ROMANO, Edward; QUINE, Zachary et al.Physical review B. Condensed matter and materials physics. 2005, Vol 72, Num 21, pp 214122.1-214122.4, issn 1098-0121Article

A diamond-anvil cell for the study of fluid binary mixtures at high temperaturesVOS, W. L; VAN ANROOIJ, F. C. J; JONGENEELEN, T et al.Review of scientific instruments. 1991, Vol 62, Num 7, pp 1844-1848, issn 0034-6748Article

An improved method of using the diamond anvil cell for infrared microprobe analysisLIN-VIEN, D; BLAND, B. J; SPENCE, V. J et al.Applied spectroscopy. 1990, Vol 44, Num 7, pp 1227-1228, issn 0003-7028, 2 p.Article

A diamond anvil cell for the investigation of superconductivity under pressures of up to 50 GPa: Pb as a low temperature manometerBIRECKOVEN, B; WITTIG, J.Journal of physics. E. Scientific instruments. 1988, Vol 21, Num 9, pp 841-848, issn 0022-3735Article

NMR in a diamond anvil cellLEE, S.-H; LUSZCZYNSKI, K; NORBERG, R. E et al.Review of scientific instruments. 1987, Vol 58, Num 3, pp 415-417, issn 0034-6748Article

Mechanical properties of tantalum under high pressureDEWAELE, A; LOUBEYRE, P.Physical review B. Condensed matter and materials physics. 2005, Vol 72, Num 13, pp 134106.1-134106.9, issn 1098-0121Article

Shear modulus collapse of lattices at high pressureKECHIN, Vladimir V.Journal of physics. Condensed matter (Print). 2004, Vol 16, Num 10, pp L125-L129, issn 0953-8984Article

The radial pressure distribution between rounded and flat anvilsKECHIN, V. V; YAKOVLEV, E. N.High Temperatures. High Pressures (Print). 1992, Vol 24, Num 6, pp 705-710, issn 0018-1544Article

The pressure induced phase shift of a photoacoustic signal in ruby as a new method for pressure measurementJOVANIC, B. R.Measurement science & technology (Print). 1992, Vol 3, Num 10, pp 979-982, issn 0957-0233Article

The highest pressure attainable in Bridgman anvilYONEDA, A.High Temperatures. High Pressures (Print). 1987, Vol 19, Num 5, pp 531-536, issn 0018-1544Article

Raman study of tetragonal TbPO4 and observation of a first-order phase transition at high pressureTATSI, A; STAVROU, E; BOULMETIS, Y. C et al.Journal of physics. Condensed matter (Print). 2008, Vol 20, Num 42, issn 0953-8984, 425216.1-425216.7Article

Studies in superconductivity at extreme pressuresSCHILLING, James S.Physica. C. Superconductivity. 2007, Vol 460-462, Num 1, pp 182-185, issn 0921-4534, 4 p.Conference Paper

A study of the electrical properties of HgS under high pressureAIMIN HAO; CHUNXIAO GAO; GUANGTIAN ZOU et al.Journal of physics. Condensed matter (Print). 2007, Vol 19, Num 42, issn 0953-8984, 425222.1-425222.9Conference Paper

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