Mg doped lithium niobate (Mg:LN) exhibits several advantages over undoped LN such as resistance to photorefraction, lower coercive fields, and p-type conductivity that is particularly pronounced at domain walls and opens up a range of applications, e.g., in domain wall electronics. Engineering of precise domain patterns necessitates well founded knowledge of switching kinetics, which can differ significantly from that of undoped LN. In this work, the role of humidity and sample composition in polarization reversal has been investigated under application of the same voltage waveform. Control over domain sizes has been achieved by varying the sample thickness and initial polarization as well as atmospheric conditions. In addition, local intro...
We investigate the structural and electronic properties of domain walls to achieve a better understa...
The utilization of charged domain walls (CDWs) as nanoelectronic devices requires three technologica...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
Mg doped lithium niobate (Mg:LN) exhibits several advantages over undoped LN such as resistance to p...
Controlling ferroelectric switching in Mg doped lithium niobate (Mg:LN) is of fundamental importance...
Conductivity in Mg doped lithium niobate (Mg:LN) plays a key role in the reduction of photorefractio...
Controlling ferroelectric switching in Mg doped lithium niobate (Mg:LN) is of fundamental importance...
The research was funded by RFBR (grant № 18-32-00641). The equipment of the Ural Center for Shared U...
The research was funded by RFBR (grant № 18-32-00641). The equipment of the Ural Center for Shared U...
Conductivity in Mg doped lithium niobate (Mg:LN) plays a key role in the reduction of photorefractio...
Charged domain walls (CDWs) in ferroelectric materials raise both fundamental and practical interest...
Ferroelectric domain walls are interfaces between areas of a material that exhibits different direct...
The effect of temperature and stoichiometry on the polarization switching rate in lithium niobate is...
The effect of temperature and stoichiometry on the polarization switching rate in lithium niobate is...
In this work, the effect of long-term room temperature exposure on the electrical conductivity of th...
We investigate the structural and electronic properties of domain walls to achieve a better understa...
The utilization of charged domain walls (CDWs) as nanoelectronic devices requires three technologica...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
Mg doped lithium niobate (Mg:LN) exhibits several advantages over undoped LN such as resistance to p...
Controlling ferroelectric switching in Mg doped lithium niobate (Mg:LN) is of fundamental importance...
Conductivity in Mg doped lithium niobate (Mg:LN) plays a key role in the reduction of photorefractio...
Controlling ferroelectric switching in Mg doped lithium niobate (Mg:LN) is of fundamental importance...
The research was funded by RFBR (grant № 18-32-00641). The equipment of the Ural Center for Shared U...
The research was funded by RFBR (grant № 18-32-00641). The equipment of the Ural Center for Shared U...
Conductivity in Mg doped lithium niobate (Mg:LN) plays a key role in the reduction of photorefractio...
Charged domain walls (CDWs) in ferroelectric materials raise both fundamental and practical interest...
Ferroelectric domain walls are interfaces between areas of a material that exhibits different direct...
The effect of temperature and stoichiometry on the polarization switching rate in lithium niobate is...
The effect of temperature and stoichiometry on the polarization switching rate in lithium niobate is...
In this work, the effect of long-term room temperature exposure on the electrical conductivity of th...
We investigate the structural and electronic properties of domain walls to achieve a better understa...
The utilization of charged domain walls (CDWs) as nanoelectronic devices requires three technologica...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...