The energy distribution of a high brightness rubidium ion beam, which is intended to be used as the source for a focused ion beam instrument, is measured with a retarding field analyzer. The ions are created from a laser-cooled and compressed atomic beam by two-step photoionization in which the ionization laser power is enhanced in a build-up cavity. Particle tracing simulations are performed to ensure the analyzer is able to resolve the distribution. The lowest achieved full width 50% energy spread is (0.205 ± 0.006) eV, which is measured at a beam current of 9 pA. The energy spread originates from the variation in the ionization position of the ions which are created inside an extraction electric field. This extraction field is essential ...
Photoionization of a laser-cooled and compressed atomic beam from a high-flux thermal source can be ...
Photoionization of a laser-cooled and compressed atomic beam from a high-flux thermal source can be ...
A new type of high-brightness ion source is under development which employs transverse laser cooling...
The energy distribution of a high brightness rubidium ion beam, which is intended to be used as the ...
The energy distribution of a high brightness rubidium ion beam, which is intended to be used as the ...
The energy distribution of a high brightness rubidium ion beam, which is intended to be used as the ...
The energy distribution of a high brightness rubidium ion beam, which is intended to be used as the ...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
The Atomic Beam Laser Cooled Ion Source (ABLIS) is a new source for focused ion beam instruments, wh...
The Atomic Beam Laser Cooled Ion Source (ABLIS) is a new source for focused ion beam instruments, wh...
A new type of high-brightness ion source is under development which employs transverse laser cooling...
Photoionization of a laser-cooled and compressed atomic beam from a high-flux thermal source can be ...
Photoionization of a laser-cooled and compressed atomic beam from a high-flux thermal source can be ...
A new type of high-brightness ion source is under development which employs transverse laser cooling...
The energy distribution of a high brightness rubidium ion beam, which is intended to be used as the ...
The energy distribution of a high brightness rubidium ion beam, which is intended to be used as the ...
The energy distribution of a high brightness rubidium ion beam, which is intended to be used as the ...
The energy distribution of a high brightness rubidium ion beam, which is intended to be used as the ...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
A two-step photoionization strategy of an ultracold rubidium beam for application in a focused ion b...
The Atomic Beam Laser Cooled Ion Source (ABLIS) is a new source for focused ion beam instruments, wh...
The Atomic Beam Laser Cooled Ion Source (ABLIS) is a new source for focused ion beam instruments, wh...
A new type of high-brightness ion source is under development which employs transverse laser cooling...
Photoionization of a laser-cooled and compressed atomic beam from a high-flux thermal source can be ...
Photoionization of a laser-cooled and compressed atomic beam from a high-flux thermal source can be ...
A new type of high-brightness ion source is under development which employs transverse laser cooling...