Recent progress in phase modulation using nanofabricated electron holograms has demonstrated how the phase of an electron beam can be controlled. In this paper, we apply this concept to the correction of spherical aberration in a scanning transmission electron microscope and demonstrate an improvement in spatial resolution. Such a holographic approach to spherical aberration correction is advantageous for its simplicity and cost-effectiveness
We have successfully developed a spherical aberration (Cs)-corrected electron microscope for probe- ...
Beam shaping—the ability to engineer the phase and the amplitude of massive and massless particles—h...
Beam shaping - the ability to engineer the phase and the amplitude of massive and massless particles...
Recent progress in phase modulation using nanofabricated electron holograms has demonstrated how the...
Recent progress in phase modulation using nanofabricated electron holograms has demonstrated how the...
Electron holography has been performed to correct the aberrations of an objective lens in electron m...
In the past 15 years, the advent of aberration correction technology in electron microscopy has enab...
In the past 15 years, the advent of aberration correction technology in electron microscopy has enab...
Recently an electromagnetic hexapole system for the correction of the spherical aberration of the ob...
The design and construction of a double-hexapole aberration corrector has made it possible to build ...
: In high resolution electron--off-axis holography, the complete information about amplitude and ph...
Nearly eighty years ago, Scherzer showed that rotationally symmetric, charge-free, static electron l...
In this paper we explore the desirability of a transmission electron microscope in which the phase o...
A new corrector of spherical aberration (C(S)) for a dedicated scanning transmission electron micros...
Beam shaping - the ability to engineer the phase and the amplitude of massive and massless particles...
We have successfully developed a spherical aberration (Cs)-corrected electron microscope for probe- ...
Beam shaping—the ability to engineer the phase and the amplitude of massive and massless particles—h...
Beam shaping - the ability to engineer the phase and the amplitude of massive and massless particles...
Recent progress in phase modulation using nanofabricated electron holograms has demonstrated how the...
Recent progress in phase modulation using nanofabricated electron holograms has demonstrated how the...
Electron holography has been performed to correct the aberrations of an objective lens in electron m...
In the past 15 years, the advent of aberration correction technology in electron microscopy has enab...
In the past 15 years, the advent of aberration correction technology in electron microscopy has enab...
Recently an electromagnetic hexapole system for the correction of the spherical aberration of the ob...
The design and construction of a double-hexapole aberration corrector has made it possible to build ...
: In high resolution electron--off-axis holography, the complete information about amplitude and ph...
Nearly eighty years ago, Scherzer showed that rotationally symmetric, charge-free, static electron l...
In this paper we explore the desirability of a transmission electron microscope in which the phase o...
A new corrector of spherical aberration (C(S)) for a dedicated scanning transmission electron micros...
Beam shaping - the ability to engineer the phase and the amplitude of massive and massless particles...
We have successfully developed a spherical aberration (Cs)-corrected electron microscope for probe- ...
Beam shaping—the ability to engineer the phase and the amplitude of massive and massless particles—h...
Beam shaping - the ability to engineer the phase and the amplitude of massive and massless particles...