Electrostatic modulation of interface conduction between semiconductors and insulating oxides is the foundation of semiconductor technology. This field effect concept can be applied on complex oxides, such as high temperature superconductors and colossal magnetoresistive manganites, in order to create new electronic and magnetic phases. Competition and coexistence of multiple nanoscale phases make them exciting to study around phase transitions. This study on hole doped La1-xSrxMnO3 systems has a two-fold purpose. One is the demonstration of the field effect on La1-xSrxMnO3 (x = 0.125, 0.2, 0.3, 0.5) thin films. It is an important step towards electrostatic control of material properties; however, a challenging task because of their charge ...
We have investigated the effect of electric field on the magnetization in La0.2Ca0.3MnO3 (LCMO) ultr...
This work reports on magnetocapacitance (MC) effects in epitaxial heterostructures of nominally 15 u...
One of the major quests in today’s microelectronic era is the development of novel low-power magneti...
Electrostatic modulation of interface conduction between semiconductors and insulating oxides is the...
Electrostatic modulation of interface conduction between semiconductors and insulating oxides is the...
Intensive research interests in condensed matter physics have been focused at the strongly correlate...
A ferroelectric field effect approach is presented for modulating magnetism in the colossal magnetor...
International audienceThe aim of this study is to probe the effect of an electric field on charge or...
Systems with strong interactions such as complex oxides show many emergent properties that are, stil...
Highly epitaxial thin films of Pr0.7Sr0.3MnO 3 were grown on (100) SrTiO3 single crystal substrates ...
Modulation of the metal-insulator phase transition of perovskite manganite oxides is achieved by a s...
A comprehensive understanding of strain coupling across heterointerfaces and its impact on physical ...
The control of the magnetization in ferromagnetic layers via electric fields is a hot topic in view ...
One of the most challenging tasks in future nanoelectronics is the realization of novel low-power co...
© 2016 Taylor & Francis Group, LLC.ABSTRACT: Local charged states have been induced at the surface o...
We have investigated the effect of electric field on the magnetization in La0.2Ca0.3MnO3 (LCMO) ultr...
This work reports on magnetocapacitance (MC) effects in epitaxial heterostructures of nominally 15 u...
One of the major quests in today’s microelectronic era is the development of novel low-power magneti...
Electrostatic modulation of interface conduction between semiconductors and insulating oxides is the...
Electrostatic modulation of interface conduction between semiconductors and insulating oxides is the...
Intensive research interests in condensed matter physics have been focused at the strongly correlate...
A ferroelectric field effect approach is presented for modulating magnetism in the colossal magnetor...
International audienceThe aim of this study is to probe the effect of an electric field on charge or...
Systems with strong interactions such as complex oxides show many emergent properties that are, stil...
Highly epitaxial thin films of Pr0.7Sr0.3MnO 3 were grown on (100) SrTiO3 single crystal substrates ...
Modulation of the metal-insulator phase transition of perovskite manganite oxides is achieved by a s...
A comprehensive understanding of strain coupling across heterointerfaces and its impact on physical ...
The control of the magnetization in ferromagnetic layers via electric fields is a hot topic in view ...
One of the most challenging tasks in future nanoelectronics is the realization of novel low-power co...
© 2016 Taylor & Francis Group, LLC.ABSTRACT: Local charged states have been induced at the surface o...
We have investigated the effect of electric field on the magnetization in La0.2Ca0.3MnO3 (LCMO) ultr...
This work reports on magnetocapacitance (MC) effects in epitaxial heterostructures of nominally 15 u...
One of the major quests in today’s microelectronic era is the development of novel low-power magneti...