papers

Publications (13)

cond-mat.mes-hall2026

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…

physics.app-ph2025

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…

cond-mat.mes-hall2023

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…

quant-ph2023

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…

cond-mat.mes-hall2021

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…

cond-mat.mes-hall2019

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…

cond-mat.mes-hall2019

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…

quant-ph2020

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…

quant-ph2020

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…

cond-mat.mes-hall2012

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…

physics.app-ph2024

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…

quant-ph2021

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…

cond-mat.mes-hall2018

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…