Almost 30 years ago, Durnin discovered that an optical beam with a transverse intensity profile in the form of a Bessel function of the first order is immune to the effects of diffraction. Unlike most laser beams, which spread upon propagation, the transverse distribution of these Bessel beams remains constant. Electrons also obey a wave equation (the Schrödinger equation), and therefore Bessel beams also exist for electron waves. We generate an electron Bessel beam by diffracting electrons from a nanoscale phase hologram. The hologram imposes a conical phase structure on the electron wave-packet spectrum, thus transforming it into a conical superposition of infinite plane waves, that is, a Bessel beam. We verify experimentally that these b...
Due to their immunity to diffraction, Bessel light modes potentially offer advantages in various app...
The ability to imprint a phase pattern onto a coherent electron wave would find many applications in...
Due to their immunity to diffraction, Bessel light modes potentially offer advantages in various app...
Almost 30 years ago, Durnin discovered that an optical beam with a transverse intensity profile in t...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
In light optics holographic beam shaping has been largely used to obtain complicated wavefronts [1] ...
Propagation invariant light fields such as Bessel light beams are of interest in a variety of curren...
Diffraction is a phenomenon related to the wave nature of light and arises when a propagating wave c...
Bessel beams possess interesting properties such as non-diffraction and the ability to self-heal aft...
Optical beams of the Bessel-type can counteract diffraction and thus maintain their profile during p...
International audienceBessel beams are a class of non-diffracting solution to the propagation equati...
International audienceWe report on a versatile method to compensate the linear attenuation in a medi...
A method is proposed for generating Bessel-like optical beams with arbitrary trajectories in free sp...
Due to their immunity to diffraction, Bessel light modes potentially offer advantages in various app...
The ability to imprint a phase pattern onto a coherent electron wave would find many applications in...
Due to their immunity to diffraction, Bessel light modes potentially offer advantages in various app...
Almost 30 years ago, Durnin discovered that an optical beam with a transverse intensity profile in t...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
We report a systematic treatment of the holographic generation of electron Bessel beams, with a view...
In light optics holographic beam shaping has been largely used to obtain complicated wavefronts [1] ...
Propagation invariant light fields such as Bessel light beams are of interest in a variety of curren...
Diffraction is a phenomenon related to the wave nature of light and arises when a propagating wave c...
Bessel beams possess interesting properties such as non-diffraction and the ability to self-heal aft...
Optical beams of the Bessel-type can counteract diffraction and thus maintain their profile during p...
International audienceBessel beams are a class of non-diffracting solution to the propagation equati...
International audienceWe report on a versatile method to compensate the linear attenuation in a medi...
A method is proposed for generating Bessel-like optical beams with arbitrary trajectories in free sp...
Due to their immunity to diffraction, Bessel light modes potentially offer advantages in various app...
The ability to imprint a phase pattern onto a coherent electron wave would find many applications in...
Due to their immunity to diffraction, Bessel light modes potentially offer advantages in various app...