Scanning tunneling microscopy combined with terahertz (THz) electromagnetic pulses and its related technologies have developed remarkably. This technology has atomic-level spatial resolution in an ultrahigh vacuum and low-temperature environment, and it measures the electrical dynamical behavior of a sample’s surface with femtosecond temporal resolution. In particular, it has been used to image the diffusion and relaxation dynamics of electrons in real time and real space and even instantaneously control molecular motions. In this Perspective, we focus on recent progress in research and development of ultrafast time-resolved THz scanning tunneling microscopy and its application to materials research
The ultrafast dynamics of charge carriers in solids plays a pivotal role in emerging optoelectronics...
Perhaps the most important aspect of contemporary condensed matter physics involves understanding st...
The main goal of the studies presented in this dissertation is to demonstrate the measurement and ma...
The ability to directly image ultrafast phenomena with nanometer spatial resolution is essential to ...
The recent development of optical technology has enabled the practical use of a carrier-envelope pha...
Scanning tunneling microscopy has revolutionized our ability to image, study, and manipulate solid s...
Coupling phase-stable single-cycle terahertz (THz) pulses to scanning tunneling microscope (STM) jun...
This thesis has introduced a novel microscope which combines the outstanding properties of ultrafast...
Terahertz spectroscopy is a powerful and contactless technique that enables to measure charge carrie...
Watching a single molecule move on its intrinsic timescale has been one of the central goals of mode...
Tunnelling is one of the most fundamental manifestations of quantum mechanics. The recent advent of ...
The ultrafast dynamics of charge carriers in solids plays a pivotal role in emerging optoelectronics...
This is the final report of a three-year, Laboratory Directed Research and Development (LDRD) projec...
The fundamental understanding of quantum dynamics in advanced materials requires precise characteriz...
The miniaturization of semiconductor devices to scales where small numbers of dopants can control de...
The ultrafast dynamics of charge carriers in solids plays a pivotal role in emerging optoelectronics...
Perhaps the most important aspect of contemporary condensed matter physics involves understanding st...
The main goal of the studies presented in this dissertation is to demonstrate the measurement and ma...
The ability to directly image ultrafast phenomena with nanometer spatial resolution is essential to ...
The recent development of optical technology has enabled the practical use of a carrier-envelope pha...
Scanning tunneling microscopy has revolutionized our ability to image, study, and manipulate solid s...
Coupling phase-stable single-cycle terahertz (THz) pulses to scanning tunneling microscope (STM) jun...
This thesis has introduced a novel microscope which combines the outstanding properties of ultrafast...
Terahertz spectroscopy is a powerful and contactless technique that enables to measure charge carrie...
Watching a single molecule move on its intrinsic timescale has been one of the central goals of mode...
Tunnelling is one of the most fundamental manifestations of quantum mechanics. The recent advent of ...
The ultrafast dynamics of charge carriers in solids plays a pivotal role in emerging optoelectronics...
This is the final report of a three-year, Laboratory Directed Research and Development (LDRD) projec...
The fundamental understanding of quantum dynamics in advanced materials requires precise characteriz...
The miniaturization of semiconductor devices to scales where small numbers of dopants can control de...
The ultrafast dynamics of charge carriers in solids plays a pivotal role in emerging optoelectronics...
Perhaps the most important aspect of contemporary condensed matter physics involves understanding st...
The main goal of the studies presented in this dissertation is to demonstrate the measurement and ma...