Light-field-driven processes occurring under conditions far beyond the diffraction limit of the light can be manipulated by harnessing spatiotemporally tunable near fields. A tailor-made carrier envelope phase in a tunnel junction formed between nanogap electrodes allows precisely controlled manipulation of these processes. In particular, the characterization and active control of near fields in a tunnel junction are essential for advancing elaborate manipulation of light-field-driven processes at the atomic-scale. Here, we demonstrate that desirable phase-controlled near fields can be produced in a tunnel junction via terahertz scanning tunneling microscopy (THz-STM) with a phase shifter. Measurements of the phase-resolved subcycle electro...
Terahertz fields can be dramatically enhanced as they propagate through nanometer-sized slits. The e...
International audienceThe interaction of monocycle terahertz (THz) fields with metal nanostructures ...
\u3cp\u3eWe demonstrate a novel method for measuring terahertz (THz) photoconductivity of semiconduc...
By utilizing terahertz scanning tunneling microscopy (THz-STM) with a carrier envelope phase shifter...
The recent development of optical technology has enabled the practical use of a carrier-envelope pha...
The fundamental understanding of quantum dynamics in advanced materials requires precise characteriz...
The active control of matter by strong electromagnetic fields is of growing importance, with applica...
Coupling phase-stable single-cycle terahertz (THz) pulses to scanning tunneling microscope (STM) jun...
We introduce ultraresolving terahertz (THz) near-field microscopy based on THz scattering at atomic ...
Tunnelling is one of the most fundamental manifestations of quantum mechanics. The recent advent of ...
Tailored nanostructures can confine electromagnetic waveforms in extremely sub-wavelength volumes, o...
We demonstrate ultrafast terahertz (THz) field emission from a tungsten nanotip enabled by local fie...
Intense phase-locked terahertz (THz) pulses are the bedrock of THz lightwave electronics, where the ...
International audienceUltrafast control of matter by a strong electromagnetic field on the atomic sc...
Tunneling is the most fundamental quantum mechanical phenomenon with wide-ranging applications. Matt...
Terahertz fields can be dramatically enhanced as they propagate through nanometer-sized slits. The e...
International audienceThe interaction of monocycle terahertz (THz) fields with metal nanostructures ...
\u3cp\u3eWe demonstrate a novel method for measuring terahertz (THz) photoconductivity of semiconduc...
By utilizing terahertz scanning tunneling microscopy (THz-STM) with a carrier envelope phase shifter...
The recent development of optical technology has enabled the practical use of a carrier-envelope pha...
The fundamental understanding of quantum dynamics in advanced materials requires precise characteriz...
The active control of matter by strong electromagnetic fields is of growing importance, with applica...
Coupling phase-stable single-cycle terahertz (THz) pulses to scanning tunneling microscope (STM) jun...
We introduce ultraresolving terahertz (THz) near-field microscopy based on THz scattering at atomic ...
Tunnelling is one of the most fundamental manifestations of quantum mechanics. The recent advent of ...
Tailored nanostructures can confine electromagnetic waveforms in extremely sub-wavelength volumes, o...
We demonstrate ultrafast terahertz (THz) field emission from a tungsten nanotip enabled by local fie...
Intense phase-locked terahertz (THz) pulses are the bedrock of THz lightwave electronics, where the ...
International audienceUltrafast control of matter by a strong electromagnetic field on the atomic sc...
Tunneling is the most fundamental quantum mechanical phenomenon with wide-ranging applications. Matt...
Terahertz fields can be dramatically enhanced as they propagate through nanometer-sized slits. The e...
International audienceThe interaction of monocycle terahertz (THz) fields with metal nanostructures ...
\u3cp\u3eWe demonstrate a novel method for measuring terahertz (THz) photoconductivity of semiconduc...