Logo image
Quantum Interference between Fundamentally Different Processes Is Enabled by Shaped Input Wavefunctions
Journal article   Peer reviewed

Quantum Interference between Fundamentally Different Processes Is Enabled by Shaped Input Wavefunctions

Jeremy Lim, Suraj Kumar, Yee Sin Ang, Lay Kee Ang, Liang Jie Wong and Ricky Ang
Advanced science, Vol.10(10), pp.e2205750-n/a
01/04/2023
PMID: 36737853

Abstract

light–matter interactions nanophotonics quantum interference ultrafast optics waveshaping
This work presents a general framework for quantum interference between processes that can involve different fundamental particles or quasi‐particles. This framework shows that shaping input wavefunctions is a versatile and powerful tool for producing and controlling quantum interference between distinguishable pathways, beyond previously explored quantum interference between indistinguishable pathways. Two examples of quantum interference enabled by shaping in interactions between free electrons, bound electrons, and photons are presented: i) the vanishing of the zero‐loss peak by destructive quantum interference when a shaped electron wavepacket couples to light, under conditions where the electron's zero‐loss peak otherwise dominates; ii) quantum interference between free electron and atomic (bound electron) spontaneous emission processes, which can be significant even when the free electron and atom are far apart, breaking the common notion that a free electron and an atom must be close by to significantly affect each other's processes. Conclusions show that emerging quantum wave‐shaping techniques unlock the door to greater versatility in light‐matter interactions and other quantum processes in general. In this work, a general framework is presented for quantum interference between processes that can involve different fundamental particles or quasi‐particles. Shaping input wavefunctions is revealed to be a versatile and powerful tool for producing and controlling quantum interference between distinguishable pathways, beyond previously explored quantum interference between indistinguishable pathways.
url
https://doi.org/10.1002/advs.202205750View
Published (Version of record) Open

Metrics

1 Record Views

Details

Logo image