Applied Physics Department HUJI Applied Physics Department
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1 The Rachel and Selim Benin School of Engineering Edmund S. Safra Campus, Jerusalem 91904, Israel Applied Physics Department HUJI Applied Physics Department
2 Applied Physics Department Agranat, Aharon - Devices and integrated circuits Bar-Gill, Nir - Quantum information, and sensing Feldman, Yuri - Dielectric spectroscopy Katz, Ori - Acousto-optic imaging in complex media Small is Different! Levy, Uriel Nano-optics Lewis, Aaron Near-field microscopy Marcus, Gilad - Ultrafast physics Marom, Dan - Photonic telecommunication devices Paltiel, Yossi - Quantum nano engineering (Department Head) Rapaport, Ronen Nano-photonics / Quantum fluids Roth, Michael - Crystal physics Department Highlights: 50 M.Sc. Level Students 30 Ph.D. Level Students 50 Publications/Year in Leading Journals 10 Patent Applications/Year 2
3 Integration Towards Applications Everything is theoretically impossible, until it is done Robert A. Heinlein Quantum Mechanics Applications Biology Devices Nano Technology Optics Photonics Chemistry 3
4 Quantum Nano Engineering Yossi Paltiel Implementation of room temperatures quantum devices Hybrid nano devices Quantum computing Spintronics Magnetic memory Detectors Single photon systems Bio-mimicking Surface superconductivity 4
5
6 Soft Matter Laboratory Broadband Dielectric Spectroscopy 10 Hz 1 THz Probing matter from the microscopic to the mesoscopic Porous materials (porous porous Glass forming liquids and glasses, polymersclays, including composites Complex Ferroelectrics liquids (microemulsions, silicon, etc.)etc.) emulsions, Ewa C mois ture=3.21% Yuri Feldman " / "max [arb units] Permittivity'' [] f / fmax Fr eq ue nc y[ Hz ] Te m pe 100 ra tu re [ C 200 ] From the smallest biomolecules to the human being
7 A New Paradigm in Human Sensitivity? Can the helical sweat ducts act as helical antennas? Yuri Feldman The helical structure of the human sweat ducts as visualized using OCT in vivo
8 Frequency Conversion by Nonlinear Optical Crystals Prof. Michael Roth Second Harmonic Generation Sum/difference Frequency Mixing Optical Parametric Oscillation for scientific, industrial, medical, military, communications, environmental lidar and entertainment laser applications Pump frequency Converted frequency RTP 650 g KTP 850 g 8
9 Intense high harmonics and ultrafast processes Gilad Marcus 1. We are developing intense ultrafast coherent XUV source based on high harmonics 2. XUV time domain studies 3. Developing femtosecond infrared femtosecond lasers 9
10 Photonic Devices for Telecommunications Dan Marom Group Mission: To innovate at the device and subsystem level and enable next generation optical communications in support of society s information consumption. RF signal PFCB core LiNbO 3 chip Output fibers Sampling pulse train Cytop cladding Silicon handle 10
11 Technology The Science of today is the Technology of tomorrow Edward Teller 11
12 Robust Biodegradable Optically Tunable Sheets Profs. Oded Shoseyov & Yossi Paltiel We are developing strong biodegradable sheets, with gas barrier properties for the packaging and agriculture industry. These sheets are transparent and can be tuned to filter unwanted light wavelengths Energy 12
13 Remote Detection of Buried Landmines Prof. Shimshon Belkin & Prof. Aharon Agranat Our bacteria glow when they sense the chemical signature of landmines buried in the soil allowing safe mapping of the minefield. Security & Safety 13
14 Changing the world of memory device as we know Prof. Yossi Paltiel
15 Next-Generation Wavelength-Selective Switches Prof. Dan Marom C/D/C - ROADM o Colorless: any l channel to any mux port o Directionless: share mux between directions o Contentionless: multiples of same l can add/drop by same mux Service providers are hard-pressed to operate their networks at high efficiency to serve their customers demands, which are continually growing at 40% / year 15
16 Thank You!
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