Cavity-mediated cooling has the potential to become one of the most efficient techniques to cool molecular species down to very low temperatures. This thesis studies the use of rate equations to analyse the cooling process in such systems. In particular the master equation is used to find rate equations that can determine the rate of change of phonons in the system. The general idea behind cavity cooling is the continuous conversion of phonons into cavity photons. While there is no spontaneous emission and decay rate associated with the concept of phonons, photons are created after a change in the phonon number has occurred and can then leak out through the cavity mirrors easily. Hence the conversion of phonons into photons can result in th...
Laser cooling exploits the physics of light scattering to cool atomic and molecular gases to close t...
The Fermi golden rule is applied as the primary theory for laser cooling of solids, by recognizing t...
The term 'laser cooling' is applied to the use of optical means to cool the motional energies of eit...
Cavity-mediated cooling has the potential to become one of the most efficient techniques to cool mol...
The cooling rate for cavity-mediated laser cooling scales as the Lamb-Dicke parameter η squared. A p...
Here we analyze cavity-mediated laser cooling for an experimental setup with an external trap which ...
Since its invention almost 50 years ago, laser cooling has become a very powerful technique for cool...
We analyze the lowest achievable temperature for a mechanical oscillator coupled with a quantum refr...
In this thesis, we investigate dynamics of many-body atomic systems coupled to electromagnetic field...
The cooling rate for cavity-mediated laser cooling scales as the Lamb-Dicke parameter η squared. A p...
We propose a generic approach to nonresonant laser cooling of atoms/molecules in a bistable optical ...
The first two chapters of the thesis are primarily a review of the work in the field. Chapter 1 focu...
In this paper, we identify a many-particle phonon expectation value ζ with the ability to induce col...
We present a quantum-mechanical theory of the cooling of a cantilever coupled via radiation pressure...
The ability to cool and trap atoms has revolutionized atomic and ultra-cold physics. Molecular physi...
Laser cooling exploits the physics of light scattering to cool atomic and molecular gases to close t...
The Fermi golden rule is applied as the primary theory for laser cooling of solids, by recognizing t...
The term 'laser cooling' is applied to the use of optical means to cool the motional energies of eit...
Cavity-mediated cooling has the potential to become one of the most efficient techniques to cool mol...
The cooling rate for cavity-mediated laser cooling scales as the Lamb-Dicke parameter η squared. A p...
Here we analyze cavity-mediated laser cooling for an experimental setup with an external trap which ...
Since its invention almost 50 years ago, laser cooling has become a very powerful technique for cool...
We analyze the lowest achievable temperature for a mechanical oscillator coupled with a quantum refr...
In this thesis, we investigate dynamics of many-body atomic systems coupled to electromagnetic field...
The cooling rate for cavity-mediated laser cooling scales as the Lamb-Dicke parameter η squared. A p...
We propose a generic approach to nonresonant laser cooling of atoms/molecules in a bistable optical ...
The first two chapters of the thesis are primarily a review of the work in the field. Chapter 1 focu...
In this paper, we identify a many-particle phonon expectation value ζ with the ability to induce col...
We present a quantum-mechanical theory of the cooling of a cantilever coupled via radiation pressure...
The ability to cool and trap atoms has revolutionized atomic and ultra-cold physics. Molecular physi...
Laser cooling exploits the physics of light scattering to cool atomic and molecular gases to close t...
The Fermi golden rule is applied as the primary theory for laser cooling of solids, by recognizing t...
The term 'laser cooling' is applied to the use of optical means to cool the motional energies of eit...