We report an optical thermometry technique using a polarization-sensitive laser scanning microscopy. WTe2 multilayer is heated by Joule heating from an alternating charge current, and its local temperature is detected via polarization rotation of the reflected light. We found a linear relationship between the temperature and the polarization rotation angle with a conversion coefficient of 25 ± 4 µrad/K. Considering the uncertain level of the polarization rotation microscopy, our system has a temperature resolution of less than 10 mK. We also confirmed that the spatial mapping of the temperature rise well matches the simulated current density distribution, which confirms that local heating is driven by Joule heating.11Nsciescopu
This dissertation examines my efforts to develop an optical platform to explore low temperature and ...
We propose a novel approach in scanning thermal microscopy of layered samples. The thermal probe (Th...
We describe an optical method to directly measure the position-dependent thermal diffusivity of refl...
Band structures are vital in determining the electronic properties of materials. Recently, the two-d...
We present further development and application examples of a thermometry approach capable of produci...
We present very high-resolution thermal microscopy using the technique of thermoreflectance, a non-c...
The recent advances in thermal wave based microscopy comprising optical beam and near field techniqu...
A scanning thermal microscope working in passive mode using a micronic thermocouple probe is present...
Mapping temperature with nanoscale spatial resolution is important for thermal transport studies and...
We introduce an optical microscopy technique aimed at characterizing the heat generation arising fro...
A Pyroelectric Scanning Microscopy system, which uses laser-induced thermal modulation for mapping t...
WTe2, an orthorhombic semimetal crystallized in Td phase, is a new transition metal dichalcogenide (...
A thermal gradient as the driving force for spin currents plays a key role in spin caloritronics. In...
For implementing the technology of thermally stimulated diagnostics of anisotropy and optical axes i...
Orthorhombic tungsten ditelluride (WTe2), with a distorted 1T structure, exhibits a large magnetores...
This dissertation examines my efforts to develop an optical platform to explore low temperature and ...
We propose a novel approach in scanning thermal microscopy of layered samples. The thermal probe (Th...
We describe an optical method to directly measure the position-dependent thermal diffusivity of refl...
Band structures are vital in determining the electronic properties of materials. Recently, the two-d...
We present further development and application examples of a thermometry approach capable of produci...
We present very high-resolution thermal microscopy using the technique of thermoreflectance, a non-c...
The recent advances in thermal wave based microscopy comprising optical beam and near field techniqu...
A scanning thermal microscope working in passive mode using a micronic thermocouple probe is present...
Mapping temperature with nanoscale spatial resolution is important for thermal transport studies and...
We introduce an optical microscopy technique aimed at characterizing the heat generation arising fro...
A Pyroelectric Scanning Microscopy system, which uses laser-induced thermal modulation for mapping t...
WTe2, an orthorhombic semimetal crystallized in Td phase, is a new transition metal dichalcogenide (...
A thermal gradient as the driving force for spin currents plays a key role in spin caloritronics. In...
For implementing the technology of thermally stimulated diagnostics of anisotropy and optical axes i...
Orthorhombic tungsten ditelluride (WTe2), with a distorted 1T structure, exhibits a large magnetores...
This dissertation examines my efforts to develop an optical platform to explore low temperature and ...
We propose a novel approach in scanning thermal microscopy of layered samples. The thermal probe (Th...
We describe an optical method to directly measure the position-dependent thermal diffusivity of refl...