Quantum photonics provides a powerful toolbox with vast applications ranging from quantum simulation, photonic information processing, all optical universal quantum computation, secure quantum internet as well as quantum enhanced sensing. Many of these applications require the integration of several complex optical elements and material systems which pose a challenge to scalability. It is essential to integrate linear and non-linear photonics on a chip to tackle this issue leading to more compact, high bandwidth devices. In this thesis we demonstrate a pathway to achieving several components in the quantum photonic toolbox on the same integrated photonic platform. We focus particularly on two of the more nontrivial components, a single phot...
Rare-earth ions (REIs) in solids are attractive optical centers due to their stable optical transiti...
As silicon photonics has matured in the past decade, chip scale optics have become an enabling techn...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
The integration of quantum emitters with integrated photonics enables complex quantum photonic circu...
I present our progress towards developing on-chip quantum light-matter interfaces like quantum memor...
I present quantum nano-photonic devices based on nanophotonic resonators coupled to rare-earth-ions ...
Due to its properties, lithium niobate is one of the most suitable material platforms for the implem...
I present our progress towards developing optical quantum memories based on photonic crystal cavitie...
Lithium niobate thin film represents as an ideal material substrate for quantum photonics due to its...
A harmonic oscillator is a ubiquitous tool in various disciplines of engineering and physics for sen...
Quantum light-matter interfaces that reversibly map the quantum state of photons onto the quantum st...
Integrated quantum memories are a scalable solution to synchronize a large number of quantum compute...
Integrated photonics is becoming more and more multifunctional thanks to the recent availability of ...
Rare-earth dopants are arguably one of the most studied optical centers in solids, with applications...
In this talk I give an overview of our recent work on quantum nano-photonic devices based on rare-ea...
Rare-earth ions (REIs) in solids are attractive optical centers due to their stable optical transiti...
As silicon photonics has matured in the past decade, chip scale optics have become an enabling techn...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
The integration of quantum emitters with integrated photonics enables complex quantum photonic circu...
I present our progress towards developing on-chip quantum light-matter interfaces like quantum memor...
I present quantum nano-photonic devices based on nanophotonic resonators coupled to rare-earth-ions ...
Due to its properties, lithium niobate is one of the most suitable material platforms for the implem...
I present our progress towards developing optical quantum memories based on photonic crystal cavitie...
Lithium niobate thin film represents as an ideal material substrate for quantum photonics due to its...
A harmonic oscillator is a ubiquitous tool in various disciplines of engineering and physics for sen...
Quantum light-matter interfaces that reversibly map the quantum state of photons onto the quantum st...
Integrated quantum memories are a scalable solution to synchronize a large number of quantum compute...
Integrated photonics is becoming more and more multifunctional thanks to the recent availability of ...
Rare-earth dopants are arguably one of the most studied optical centers in solids, with applications...
In this talk I give an overview of our recent work on quantum nano-photonic devices based on rare-ea...
Rare-earth ions (REIs) in solids are attractive optical centers due to their stable optical transiti...
As silicon photonics has matured in the past decade, chip scale optics have become an enabling techn...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...