Publications (13)
Quantum-Limited Acoustoelectric Amplification in a Piezoelectric-2DEG Heterostructure
Eric Chatterjee, Daniel Soh, Matt Eichenfield
We provide a quantum mechanical description of phonon amplification in a heterostructure consisting of a two-dimensional electron gas (2DEG) stacked on top of a piezoelectric mater…
An Electrically Injected and Solid State Surface Acoustic Wave Phonon Laser
Alexander Wendt, Matthew J. Storey, Michael Miller +6
Surface acoustic waves (SAWs) enable a wide array of technologies including RF filters, chemical and biological sensors, acousto-optic devices, acoustic control of microfluidic flo…
Ultra-High-Precision Detection of Single Microwave Photons based on a Hybrid System between Majorana Zero Mode and a Quantum Dot
Eric Chatterjee, Wei Pan, Daniel Soh
The ability to detect single photons has become increasingly essential due to the rise of photon-based quantum computing. In this theoretical work, we propose a system consisting o…
Label-free quantum super-resolution imaging using entangled multi-mode squeezed light
Daniel Soh, Eric Chatterjee
In this study, we explore the theoretical application of entangled multi-mode squeezed light for label-free optical super-resolution imaging. By generating massively entangled mult…
Microwave Photon Number Resolving Detector Using the Topological Surface State of Superconducting Cadmium Arsenide
Eric Chatterjee, Wei Pan, Daniel Soh
Photon number resolving detectors play a central role in quantum optics. A key challenge in resolving the number of absorbed photons in the microwave frequency range is finding a s…
Low-Temperature Annihilation Rate for Quasi-Localized Excitons in Monolayer MoS2
Eric Chatterjee, Daniel B. S. Soh, Christopher Rogers +2
The strong Coulomb forces in monolayer transition metal dichalcogenides ensure that optical excitation of band electrons gives rise to Wannier-Mott excitonic states, each of which…
Nonlinear optical response of a local surface plasmon coupled to a 2D material
Daniel B. S. Soh, Ryotatsu Yanagimoto, Eric Chatterjee +1
We present a theoretical study of the optical response of a nonlinear oscillator formed by coupling a metal nanoparticle local surface plasmon resonance to excitonic degrees of fre…
High-fidelity State Transfer Between Leaky Quantum Memories
Daniel Soh, Eric Chatterjee, Matt Eichenfield
We derive the optimal analytical quantum-state-transfer control solutions for two disparate quantum memory blocks. Employing the SLH formalism description of quantum network theory…
Optimal Quantum Transfer from Input Flying Qubit to Lossy Quantum Memory
Eric Chatterjee, Daniel Soh, Matt Eichenfield
In a quantum network, a key challenge is to minimize the direct reflection of flying qubits as they couple to stationary, resonator-based memory qubits, as the reflected amplitude…
Raman spectroscopy study of rotated double-layer graphene: Misorientation-angle dependence of electronic structure
Kwanpyo Kim, Sinisa Coh, Liang Z. Tan +7
We present a systematic Raman study of unconventionally-stacked double-layer graphene, and find that the spectrum strongly depends on the relative rotation angle between layers. Ro…
Ab-Initio Calculations of Nonlinear Susceptibility and Multi-Phonon Mixing Processes in a 2DEG-Piezoelectric Heterostructure
Eric Chatterjee, Alexander Wendt, Daniel Soh +1
Solid-state elastic-wave phonons are a promising platform for a wide range of quantum information applications. An outstanding challenge and enabling capability in harnessing phono…
Reconfigurable quantum phononic circuits via piezo-acoustomechanical interactions
Jeffrey C. Taylor, Eric Chatterjee, William F. Kindel +2
We show that piezoelectric strain actuation of acoustomechanical interactions can produce large phase velocity changes in an existing quantum phononic platform: aluminum nitride on…
Optical nonlinearities of excitons in monolayer MoS2
Daniel B. S. Soh, Christopher Rogers, Dodd J. Gray +2
We calculate linear and nonlinear optical susceptibilities arising from the excitonic states of mono- layer MoS2 for in-plane light polarizations, using second-quantized bound and…