Imaging and manipulating individual atoms with submicrometer separation can be instrumental for quantum simulation of condensed matter Hamiltonians and quantum computation with neutral atoms. Here we present an open-source design of a microscope objective for atomic strontium, consisting solely of off-the-shelf lenses, that is diffraction-limited for 461 nm light. A prototype built with a simple stacking design is measured to have a resolution of 0.63(4) µm, which is in agreement with the predicted value. This performance, together with the near diffraction-limited performance for 532 nm light, makes this design useful for both quantum gas microscopes and optical tweezer experiments with strontium. Our microscope can easily be adapted to ex...
This work details the design, construction, and use of an apparatus which cools atomic strontium to ...
Single strontium atoms held in optical tweezers have so far only been imaged using the broad $^{1\hs...
This dissertation describes the design, construction, and characterization of a new type of aberrati...
Imaging and manipulating individual atoms with submicrometer separation can be instrumental for quan...
Optical tweezers provide a versatile platform for the manipulation and detection of single atoms. He...
The thesis describes the design and construction of a new versatile strontium quantum gas machine wi...
Using matter wave interferometry to perform high precision measurements is an exciting field of mode...
In this thesis, we discuss the progress made in developing a quantum gas microscope for the study of...
This manuscript presents the construction of a new quantum ultracold atom experiment using strontium...
This manuscript presents the first steps of a new ultracold atoms experiment using strontium 84. The...
We demonstrate site-resolved imaging of individual bosonic 174Yb atoms in aHubbard-regime twodimensi...
This thesis reports the construction of a novel apparatus for experiments with ul-tracold atoms in o...
In recent years, cold atoms have been the centerpiece of many remarkably sensitive measurements, and...
This thesis describes the methods used to achieve single-atom and single-site resolved fluorescence ...
Quantum-gas microscopy has proven to be a valuable tool for the field of quantum simulation. It prov...
This work details the design, construction, and use of an apparatus which cools atomic strontium to ...
Single strontium atoms held in optical tweezers have so far only been imaged using the broad $^{1\hs...
This dissertation describes the design, construction, and characterization of a new type of aberrati...
Imaging and manipulating individual atoms with submicrometer separation can be instrumental for quan...
Optical tweezers provide a versatile platform for the manipulation and detection of single atoms. He...
The thesis describes the design and construction of a new versatile strontium quantum gas machine wi...
Using matter wave interferometry to perform high precision measurements is an exciting field of mode...
In this thesis, we discuss the progress made in developing a quantum gas microscope for the study of...
This manuscript presents the construction of a new quantum ultracold atom experiment using strontium...
This manuscript presents the first steps of a new ultracold atoms experiment using strontium 84. The...
We demonstrate site-resolved imaging of individual bosonic 174Yb atoms in aHubbard-regime twodimensi...
This thesis reports the construction of a novel apparatus for experiments with ul-tracold atoms in o...
In recent years, cold atoms have been the centerpiece of many remarkably sensitive measurements, and...
This thesis describes the methods used to achieve single-atom and single-site resolved fluorescence ...
Quantum-gas microscopy has proven to be a valuable tool for the field of quantum simulation. It prov...
This work details the design, construction, and use of an apparatus which cools atomic strontium to ...
Single strontium atoms held in optical tweezers have so far only been imaged using the broad $^{1\hs...
This dissertation describes the design, construction, and characterization of a new type of aberrati...