Harmonic oscillators might be one of the most fundamental entities described by physics. Yet they stay relevant in recent research. The topological properties associated with exceptional points that can occur when two modes interact have generated much interest in recent years. Harmonic oscillators are also at the heart of new quantum technological applications: the long lifetime of high-Q resonators make them advantageous as quantum memories, and they are employed for narrowband processing of quantum signals, as in Josephson parametric amplifiers. The goal of this thesis is to explore different fundamental regimes of two coupled harmonic oscillators using cavity optomechanics as the experimen- tal platform. With consistent progress in att...
The study of light-matter interaction has led to many fundamental discoveries as well as to the deve...
As various platforms are being developed in quantum information science, measures to interconnect di...
In the field of quantum computation and communication there is a compelling need for quantum-coheren...
A primary challenge in quantum science and technology is to isolate the fragile quantum states from ...
The field of cavity optomechanics, which concerns the coupling of a mechanical object's motion to th...
In the same year as Einstein's annus mirabilis, English engineer and physicist John Flemming patente...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. This al...
Mechanical oscillators are among the most important scientific tools in the modern physics. From the...
This thesis explores the coupling of microwave cavities containing a Superconducting QUantum Interfe...
Why are classical theories often sufficient to describe the physics of our world even though everyth...
The field of cavity-optomechanics explores the interaction of light with sound in an ever increasing...
Optomechanical systems offer new opportunities in quantum information processing and quantum sensing...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
In the past several years, the field of optomechanics has progressed from proof-of-principle experim...
My Ph.D dissertation is on the fundamental effects in optomechanical systems (OMS) and their importa...
The study of light-matter interaction has led to many fundamental discoveries as well as to the deve...
As various platforms are being developed in quantum information science, measures to interconnect di...
In the field of quantum computation and communication there is a compelling need for quantum-coheren...
A primary challenge in quantum science and technology is to isolate the fragile quantum states from ...
The field of cavity optomechanics, which concerns the coupling of a mechanical object's motion to th...
In the same year as Einstein's annus mirabilis, English engineer and physicist John Flemming patente...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. This al...
Mechanical oscillators are among the most important scientific tools in the modern physics. From the...
This thesis explores the coupling of microwave cavities containing a Superconducting QUantum Interfe...
Why are classical theories often sufficient to describe the physics of our world even though everyth...
The field of cavity-optomechanics explores the interaction of light with sound in an ever increasing...
Optomechanical systems offer new opportunities in quantum information processing and quantum sensing...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
In the past several years, the field of optomechanics has progressed from proof-of-principle experim...
My Ph.D dissertation is on the fundamental effects in optomechanical systems (OMS) and their importa...
The study of light-matter interaction has led to many fundamental discoveries as well as to the deve...
As various platforms are being developed in quantum information science, measures to interconnect di...
In the field of quantum computation and communication there is a compelling need for quantum-coheren...