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dc.contributor.author Ono S.
dc.contributor.author Kikegawa T.
dc.contributor.author Ohishi Y.
dc.date.accessioned 2025-04-25T03:22:03Z
dc.date.available 2025-04-25T03:22:03Z
dc.date.issued 2006
dc.identifier https://elibrary.ru/item.asp?id=52841333
dc.identifier.citation Physics and Chemistry of Minerals, 2006, 33, 3, 200-206
dc.identifier.issn 0342-1791
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/49042
dc.description.abstract High-pressure and high-temperature experiments using a laser-heated diamond anvil cell (LHDAC) and synchrotron X-ray diffraction have revealed a phase transition in MgAl2O4. CaTi2O4-type MgAl2O4 was found to be stable at pressures between 45 and at least 117 GPa. The transition pressure of CaTi2O4-type phase in MgAl2O4 is much lower than that in the natural N-type mid-oceanic ridge basalt composition. The Birch–Murnaghan equation of state for CaTi2O4-type MgAl2O4 was determined from the experimental unit cell parameters with K 0=219(±6) GPa, K 0′=4(constrained value), and V 0=238.9(±9) Å3. The observed compressibility was in agreement with the theoretical compressibility calculated in a previous study. ε-MgAl2O4 was observed at pressures between 40 and 45 GPa, which has not been reported in natural rock compositions. The gradient (dP/dT slope) of the transition from the ε-type to CaTi2O4-type MgAl2O4 had a positive value. These results should resolve the dispute regarding the stable high-pressure phase of MgAl2O4, which has been reported in earlier studies using both the multi-anvil press and the diamond anvil cell.
dc.subject MGAL2O4 POLYMORPHS
dc.subject PHASE TRANSITION
dc.subject COMPRESSIBILITY
dc.subject HIGH PRESSURE
dc.subject DIAMOND ANVIL CELL
dc.title THE STABILITY AND COMPRESSIBILITY OF MGAL2O4 HIGH-PRESSURE POLYMORPHS
dc.type Статья
dc.identifier.doi 10.1007/s00269-006-0068-z


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