TAU-University of Bath Joint Workshop on Light-Matter Interaction

Slides:



Advertisements
Similar presentations
Use of High-Performance Computing in Physics David Bird Works on quantum mechanics of electrons at surfaces and electromagnetism of photonic crystals.
Advertisements

Scattering & Absorption of Light by a Single Molecule under a Subwavelength Aperture strong interaction of matter and an ongoing light beam direct measurement.
Lecture 32 General issues of spectroscopies. II (c) So Hirata, Department of Chemistry, University of Illinois at Urbana-Champaign. This material has been.
Multi-wave Mixing In this lecture a selection of phenomena based on the mixing of two or more waves to produce a new wave with a different frequency, direction.
Development and brief application of Raman selection rules Alex Kitt.
From weak to strong coupling of quantum emitters in metallic nano-slit Bragg cavities Ronen Rapaport.
I.V. Iorsh, I.V. Shadrivov, P.A. Belov, and Yu.S. Kivshar Benasque, , 2013.
Resonances and optical constants of dielectrics: basic light-matter interaction.
Lavinia P. Rajahram 18 th April 2014 NANO LASER. SHRINKING THE LASER!
Materials in Extreme THz Fields Valery Dolgashev Hermann Duerr Shambhu Ghimire Hirohito Ogasawara Haidan Wen Aaron Lindenberg.
Surface Plasmon Resonance General Introduction Steffen Jockusch 07/15/07 Plasmons: - collective oscillations of the “free electron gas” density, often.
X-ray Free-Electron Lasers: Challenges for Theory, Cambridge, Massachusetts, USA, June 19, 2006 Infrared X-ray pump-probe spectroscopy Hans Ågren Department.
SURFACE PLASMON POLARITONS. SPPs Pioneering work of Ritchie (1957) Propagate along the surface of a conductor Trapped on the surface because of their.
Jacob B Khurgin Johns Hopkins University, Baltimore Greg Sun
Pump-Probe Spectroscopy Chelsey Dorow Physics 211a.
What is there to do in physics and astronomy? SWAP Research Overview January 30, 2004 Catherine H. Crouch & David Cohen.
Lecture 3 INFRARED SPECTROMETRY
Nonlinear Optics: Phenomena, Materials and Devices -Honors senior undergraduate and graduate level course. -Approximately lecture hours + 3 seminars.
Nonlinear Spectroscopy: Characterizing Fluctuations Andrei Tokmakoff MIT Department of Chemistry 2009.
Wave Nature of Light and Quantum Theory
1 Cold molecules Mike Tarbutt LMI Lecture, 05/11/12.
Vibrational and Rotational Spectroscopy
Purdue University Spring 2014 Prof. Yong P. Chen Lecture 16 (3/31/2014) Slide Introduction to Quantum Optics.
Christopher Devulder, Slava V. Rotkin 1 Christopher Devulder, Slava V. Rotkin 1 1 Department of Physics, Lehigh University, Bethlehem, PA INTRODUCTION.
Attosecond Light and Science at the Time-scale of the Electron –
Superradiance, Amplification, and Lasing of Terahertz Radiation in an Array of Graphene Plasmonic Nanocavities V. V. Popov, 1 O. V. Polischuk, 1 A. R.
Light and Matter Tim Freegarde School of Physics & Astronomy University of Southampton Controlling light with light.
V.I. Konov et all Folie 1 Alexander M. Prokhorov Ninetieth anniversary 90.
Itoh Lab. M1 Masataka YASUDA
SPECTROSCOPIC CONCEPTS BY Dr.JAGADEESH. INTRODUCTION SPECTROSCOPY: Study of interaction of matter with electromagnetic radiationelectromagnetic radiation.
Spectroscopy and electromagnetic waves. Polarisability of Matter.
Lecture 32 General issues of spectroscopies. II. General issues of spectroscopies We will learn two types of spectroscopies: absorption/emission spectroscopy.
Strong light-matter coupling: coherent parametric interactions in a cavity and free space Strong light-matter coupling: coherent parametric interactions.
Strong coupling between a metallic nanoparticle and a single molecule Andi Trügler and Ulrich Hohenester Institut für Physik, Univ. Graz
Fundamentals of Polarization and Polarizability Seth R. Marder Joseph W. Perry Department of Chemistry.
Nonlinear Optical Response of Nanocavities in Thin Metal Films Yehiam Prior Department of Chemical Physics Weizmann Institute of Science With Adi Salomon.
Dept. of Electrical and Electronic Engineering The University of Hong Kong Page 1 IMWS-AMP 2015 Manipulating Electromagnetic Local Density of States by.
Ramsey Spectroscopy: Search for e- Dipole Moment
Plasmon Induced Electrical Conduction in Molecular Devices Parag Banerjee,† David Conklin,‡ Sanjini Nanayakkara,‡ Tae- Hong Park,§ Michael J. Therien,
modes Atomic Vibrations in Crystals = Phonons Hooke’s law: Vibration frequency   f = force constant, M = mass Test for phonon effects by using isotopes.
Attosecond Optical Science V R. The key idea; F=ma Classically an atom’s own electron, driven by a strong electric field can interact with its parent.
Chapter 8. Molecular Motion and Spectroscopy
Gap vortex solitons in periodic media with quadratic nonlinearity
Raman spectroscopy.
Introduction of Nanoplasmonics 2011 Spring Semester.
EEE 2056 PHYSICAL ELECTRONICS ASSIGNMENT
RAMAN EFFECT.
UNIT IV Molecules.
SUBMITTED BY AKHILA VASANTH.B S3 EC ROLLNO:8
Generating Accelerating Light with Metasurfaces
Few photon optics: Ultimate Nonlinearities
Jacqueline Bloch, Alberto Amo
Nuggets on Background Physics
Since the 1970s, the innovative development of nanoparticles is due to a combination of theory and experiments in the fields of physics chemistry materials.
Muhammed Sayrac Phys-689 Modern Atomic Physics Spring-2016
Towards Functional Sub-Wavelength Photonic Structures MP0702
Strong Coupling between Molecules and Plasmonic Nanostructures
John Robinson Pierce, American engineer and author
Harnessing Surface Plasmon Subwavelength Optics in Metallic Nanostructures for Enhanced Efficiency in Thin-Film Solar Cells Sang-Hyun Oh, Department of.
Coupled atom-cavity system
INFRARED SPECTROSCOPY Dr. R. P. Chavan Head, Department of Chemistry
CHAPTER 11: NANOBIOTECHNOLOGY
Entangled Photons Anneke Batenburg
Instrumental Analysis
Qubit-induced high-order nonlinear interaction of the polar molecules
Tuning Interactions Between Quantum Dots and Cavities
Samuel Gomez Mentor: Sirak M. Mekonen
Fig. 1 Plasmonic pumping experiment and photoinduced near-field optical response in Hg0.81Cd0.19Te. Plasmonic pumping experiment and photoinduced near-field.
Exciton Polariton Waveguide in ZnO Nanorod
PLASMONICS AND ITS APPLICATIONS BY RENJITH MATHEW ROY. From classical fountations to its modern applications
Presentation transcript:

TAU-University of Bath Joint Workshop on Light-Matter Interaction Workshop program: 10:00-10:15 Get together, coffee, and refreshments 10:15-10:20 Greetings   10:20-10:50 Boris Malomed Spontaneous symmetry breaking in nonlinear optics 10:50-11:20 Dmitry Skryabin Soliton and topological physics with microcavity polaritons 11:20-11:50 Ady Arie Structured super oscillating beams of photons and electrons 11:50-12:05 Coffee Break 12:05-12:35 Tal Schwartz Strong coupling in organic cavities: Quantum optics for molecular chemistry 12:35-13:05 Andrey Gorbach Nonlinear graphene plasmonics: manipulating light on a surface 13:05-13:35 Pavel Ginzburg Nonlinear and nonlocal surface plasmonics 13:35-14:05 Ventsislav Valev Second harmonic generation chiroptical effects in plasmonic nanostructures 14:05-15:00 Lunch Break2 15:00-15:30 Haim Suchowski Octave spanning mid-IR pulses for near field spectroscopy 15:30-16:00 Steve Andrews Time Domain Terahertz Photonics - an overview of work on materials and devices at terahertz frequencies in Bath 16:00-16:30 Sharly Fleischer Rotational control of asymmetric molecules: dipole- versus polarizability- driven rotational dynamics 16:30-17:00 Peter Mosley Shape, sieve, and switch: engineering single photons for quantum technologies 17:00-17:15 Concluding Remarks  17:15-18:00 Wine and Cheese