Electrical manipulation of magnetism has been a long sought-after goal to realize energy-efficient spintronics. During the past decade, multiferroic materials combining (anti)ferromagnetic and ferroelectric properties are now drawing much attention and many reports have focused on magnetoelectric coupling effect through strain, charge, or exchange bias. This paper gives an overview of recent progress on electrical manipulation of magnetism through strain-mediated magnetoelectric coupling in multiferroic heterostructures
Multiferroic magnetoelectric (ME) materials, which simultaneously show ferroelectricity and magnetic...
The term multiferroics has been coined to describe materials in which two or all three ferroic order...
The rapid development of computing applications demands novel low-energy consumption devices for inf...
Presented on February 22, 2022 from 12:00 p.m.-1:00 p.m. in the Marcus Nanotechnology Building, Room...
The coupling of magnetic and electric order parameters, i.e., the magnetoelectric effect, has been w...
AbstractMultiferroic heterostructures showing both electric and magnetic orders have attracted much ...
Modern data storage devices use the magnetization in a material to store information. Current resear...
Voltage control of magnetism in multiferroics, where the ferromagnetism and ferroelectricity are sim...
Magnetism and ferroelectricity are essential to many forms of current technology, and the quest for ...
Magnetism and ferroelectricity are essential to many forms of current technology, and the quest for ...
Multiferroics which combine two or more order parameters of ferroelectricity, ferromagnetism and fer...
This dissertation presents a study of a heterostructure composed of room temperature magnetoelectric...
Strain-coupled multiferroic heterostructures provide a path to energy-efficient, voltage-controlled ...
Abstract. Multiferroic (MF) materials with simultaneous magnetic and electric long range order and o...
Electric-field control of magnetism is significant for the next generation of large-capacity and low...
Multiferroic magnetoelectric (ME) materials, which simultaneously show ferroelectricity and magnetic...
The term multiferroics has been coined to describe materials in which two or all three ferroic order...
The rapid development of computing applications demands novel low-energy consumption devices for inf...
Presented on February 22, 2022 from 12:00 p.m.-1:00 p.m. in the Marcus Nanotechnology Building, Room...
The coupling of magnetic and electric order parameters, i.e., the magnetoelectric effect, has been w...
AbstractMultiferroic heterostructures showing both electric and magnetic orders have attracted much ...
Modern data storage devices use the magnetization in a material to store information. Current resear...
Voltage control of magnetism in multiferroics, where the ferromagnetism and ferroelectricity are sim...
Magnetism and ferroelectricity are essential to many forms of current technology, and the quest for ...
Magnetism and ferroelectricity are essential to many forms of current technology, and the quest for ...
Multiferroics which combine two or more order parameters of ferroelectricity, ferromagnetism and fer...
This dissertation presents a study of a heterostructure composed of room temperature magnetoelectric...
Strain-coupled multiferroic heterostructures provide a path to energy-efficient, voltage-controlled ...
Abstract. Multiferroic (MF) materials with simultaneous magnetic and electric long range order and o...
Electric-field control of magnetism is significant for the next generation of large-capacity and low...
Multiferroic magnetoelectric (ME) materials, which simultaneously show ferroelectricity and magnetic...
The term multiferroics has been coined to describe materials in which two or all three ferroic order...
The rapid development of computing applications demands novel low-energy consumption devices for inf...