Premi extraordinari doctorat 2013-2014Nanotechnology was named one of the key enabling technologies by the European Commission and its tremendous impact was envisioned early by 20th century physicist R.Feynman in his now oft-quoted talk "Plenty of Room at the bottom". Nanotechnology and nanoscience deal with structures barely visible with an optical microscope, yet much bigger than simple molecules. Matter at this mesoscale is often awkward to explore as it contains too many atoms to be easily understood by straightforward application of quantum mechanics (although the fundamental laws still apply). Yet, these systems are not so large as to be completely free of quantum effects; thus, they do not simply obey the classical physics governing ...
Cavity-enhanced radiation-pressure coupling between optical and mechanical degrees of freedom allows...
Levitodynamics is a fast growing field that studies the levitation and manipulation of micro- and na...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.Free-space optic...
Premi extraordinari doctorat 2013-2014Nanotechnology was named one of the key enabling technologies ...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
Tests of quantum mechanics on a macroscopic scale require extreme control over mechanical motion and...
.The ability to engineer and control the macroscopic motion of mechanical oscillators has become an ...
Thesis (Ph. D.)--University of Rochester. The Institute of Optics, 2019.Optomechanical systems are c...
A levitated nanomechanical oscillator under ultra-high vacuum (UHV) is highly isolated from its envi...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
Optomechanical systems explore and exploit the coupling between light and the mechanical motion of m...
The use of levitated nanospheres represents a new paradigm for the optomechanical cooling of a small...
In this work I report on a hybrid trap platform for sensitive optomechanics experiments with applica...
With the unique advantage of great isolation from the thermal environment, levitated optomechanics h...
Levitated nano-oscillators are promising platforms for testing fundamental physics and quantum mecha...
Cavity-enhanced radiation-pressure coupling between optical and mechanical degrees of freedom allows...
Levitodynamics is a fast growing field that studies the levitation and manipulation of micro- and na...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.Free-space optic...
Premi extraordinari doctorat 2013-2014Nanotechnology was named one of the key enabling technologies ...
Optomechanics is concerned with the use of light to control mechanical objects. As a field, it has b...
Tests of quantum mechanics on a macroscopic scale require extreme control over mechanical motion and...
.The ability to engineer and control the macroscopic motion of mechanical oscillators has become an ...
Thesis (Ph. D.)--University of Rochester. The Institute of Optics, 2019.Optomechanical systems are c...
A levitated nanomechanical oscillator under ultra-high vacuum (UHV) is highly isolated from its envi...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
Optomechanical systems explore and exploit the coupling between light and the mechanical motion of m...
The use of levitated nanospheres represents a new paradigm for the optomechanical cooling of a small...
In this work I report on a hybrid trap platform for sensitive optomechanics experiments with applica...
With the unique advantage of great isolation from the thermal environment, levitated optomechanics h...
Levitated nano-oscillators are promising platforms for testing fundamental physics and quantum mecha...
Cavity-enhanced radiation-pressure coupling between optical and mechanical degrees of freedom allows...
Levitodynamics is a fast growing field that studies the levitation and manipulation of micro- and na...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2015.Free-space optic...