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Title: Pressure-induced electronic and magnetic phase transitions in a Mott insulator: Ti-doped C a 3 R u 2 O 7 bilayer ruthenate

Journal Article · · Physical Review B

Sponsoring Organization:
USDOE
Grant/Contract Number:
SC0012432
OSTI ID:
1273682
Journal Information:
Physical Review B, Journal Name: Physical Review B Vol. 94 Journal Issue: 4; ISSN 2469-9950
Publisher:
American Physical SocietyCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 8 works
Citation information provided by
Web of Science

References (31)

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Nature of the Mott Transition in Ca 2 RuO 4 journal June 2010
From quasi-two-dimensional metal with ferromagnetic bilayers to Mott insulator with G-type antiferromagnetic order in Ca 3 (Ru 1 x Ti x ) 2 O 7 journal February 2013
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From Mott insulator to ferromagnetic metal: A pressure study of Ca 2 RuO 4 journal May 2002
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Colossal Magnetoresistance in a Mott Insulator via Magnetic Field-Driven Insulator-Metal Transition journal May 2016
Commensurate-incommensurate magnetic phase transition in the Fe-doped bilayer ruthenate Ca 3 Ru 2 O 7 journal June 2014
Observation of a Metallic Antiferromagnetic Phase and Metal to Nonmetal Transition in Ca 3 Ru 2 O 7 journal March 1997
Electronic correlations, magnetism, and Hund's rule coupling in the ruthenium perovskites SrRuO 3 and CaRuO 3 journal May 2015
Orbital-selective Mott-insulator transition in Ca 2 - x Sr x RuO 4 journal February 2002
High-pressure diffraction studies on Ca 2 RuO 4 journal September 2005
Mott transition extremely sensitive to impurities in Ca 3 Ru 2 O 7 revealed by hard x-ray photoemission studies journal June 2013
Emergent electronic and magnetic state in Ca 3 Ru 2 O 7 induced by Ti doping journal November 2011