Theory and applications of toroidal moments in electrodynamics: their emergence, characteristics, and technological relevance
N Talebi, S Guo, PA van Aken - Nanophotonics, 2018 - degruyter.com
Dipole selection rules underpin much of our understanding in characterization of matter and
its interaction with external radiation. However, there are several examples where these …
its interaction with external radiation. However, there are several examples where these …
Control and measurement of quantum light pulses for quantum information science and technology
Manipulation of quantum optical pulses, such as single photons or entangled photon pairs,
enables numerous applications, from quantum communications and networking to …
enables numerous applications, from quantum communications and networking to …
Reconstruction of wave function via spin-orbit interaction of light
The measurement of a wave function plays a pivotal role in quantum physics and presents a
distinctive challenge in experiment. Recent works have shown that both the real and …
distinctive challenge in experiment. Recent works have shown that both the real and …
Universal relation between the conditional auto-correlation function and the cross-correlation function of biphotons
TJ Shih, WK Huang, YM Lin, KB Li, CY Hsu… - Optics …, 2024 - opg.optica.org
We systematically studied the relation between the conditional auto-correlation function
(CACF) and cross-correlation function (CCF) of biphotons or pairs of single photons. The …
(CACF) and cross-correlation function (CCF) of biphotons or pairs of single photons. The …
Loss-tolerant state engineering for quantum-enhanced metrology via the reverse Hong–Ou–Mandel effect
Highly entangled quantum states, shared by remote parties, are vital for quantum
communications and metrology. Particularly promising are the N00N states—entangled N …
communications and metrology. Particularly promising are the N00N states—entangled N …
Measuring the joint spectral mode of photon pairs using intensity interferometry
The ability to manipulate and measure the time-frequency structure of quantum light is useful
for information processing and metrology. Measuring this structure is also important when …
for information processing and metrology. Measuring this structure is also important when …
Spectrally resolved Hong-Ou-Mandel interference between independent photon sources
Hong-Ou-Mandel (HOM) interference between independent photon sources (HOMI-IPS) is
the fundamental block for quantum information processing. All the previous HOMI-IPS …
the fundamental block for quantum information processing. All the previous HOMI-IPS …
Extended Wiener–Khinchin theorem for quantum spectral analysis
The classical Wiener–Khinchin theorem (WKT), which can extract spectral information by
classical interferometers through Fourier transform, is a fundamental theorem used in many …
classical interferometers through Fourier transform, is a fundamental theorem used in many …
Testing the Bell inequality on frequency-bin entangled photon pairs using time-resolved detection
Entanglement, describing the inseparability of a quantum multiparty system, is one of the
most intriguing features of quantum mechanics. Violation of Bell inequality, for ruling out the …
most intriguing features of quantum mechanics. Violation of Bell inequality, for ruling out the …
Measuring the quantum state of a photon pair entangled in frequency and time
Quantum entanglement plays a prominent role in both foundational physics and emerging
quantum technologies. Light is especially promising as a platform for experimental …
quantum technologies. Light is especially promising as a platform for experimental …