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אוקטובר 01, 2009

  • Date:05רביעידצמבר 2012

    הקאמרטה הישראלית ירושלים

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    שעה
    20:30 - 20:30
    מיקום
    אודיטוריום מיכאל סלע
    צרו קשר
    אירועי תרבות
  • Date:06חמישידצמבר 2012

    Exploring the Quantum Properties of Microwave Photons emitted from Solid State Circuits

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    שעה
    11:15 - 12:30
    מיקום
    בניין הפיזיקה ע"ש עדנה וק.ב. וייסמן
    מרצהANDREAS WALLRAF
    SWISS FEDERAL INSTITUTE OF THECHNOLOGY ZURICH
    מארגן
    הפקולטה לפיזיקה
    צרו קשר
    תקצירShow full text abstract about Using modern micro and nano-fabrication techniques combined ...»
    Using modern micro and nano-fabrication techniques combined with superconducting materials we realize electronic circuits the dynamics of which are governed by the laws of quantum mechanics. Making use of the strong interaction of photons with superconducting quantum two-level systems realized in these circuits we investigate both fundamental quantum effects of light and applications in quantum information processing. In this presentation, I will discuss novel methods to investigate the quantum properties of microwave frequency radiation emitted from solid state devices. Instead of employing photon counters, as commonly done at optical frequencies, we use linear amplifiers and measure the amplitude and phase of the emitted electromagnetic fields at the quantum level. For this purpose we have developed efficient methods to separate the quantum signal of interest from the noise added by the linear amplifiers [1]. To demonstrate the power of these techniques we have realized on-demand single microwave photon sources which we characterize using correlation function measurements which display anti-bunching of the detected photons [2] and full quantum state tomography which display the negativity of the extracted Wigner functions [3]. The presented techniques are readily applicable for investigating other solid state emitters in the microwave frequency domain, such as quantum dots for example. We have also explored the entanglement created between stationary emitters and freely propagating microwave photons [4] and the Hong-Ou-Mandel effect in this way.

    [1] C. Eichler et al., Phys. Rev. A 86, 032106 (2012)
    [2] D. Bozyigit et al., Nat. Phys. 7, 154 (2011)
    [3] C. Eichler et al., Phys. Rev. Lett. 106, 220503 (2011)
    [4] C. Eichler et al., Phys. Rev. Lett., in print (2012), also arXiv:1209.0441
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  • Date:06חמישידצמבר 2012

    Controlling light in complex media: Looking around corners and through turbid layers

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    שעה
    12:00 - 12:00
    מיקום
    בניין יעקב זיסקינד
    מרצהYaron Silberberg
    Department of Physics of Complex Systems, Weizmann Institute of Science
    מארגן
    הפקולטה למתמטיקה ומדעי המחשב
    צרו קשר
    הרצאה
  • Date:06חמישידצמבר 2012

    פסטיבל להיטי שנות 60,70,80

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    שעה
    19:30 - 19:30
    כותרת
    הלהיטים הגדולים של כל הזמנים מאלביס פרסלי ועד סטיבי וונדר
    מיקום
    אודיטוריום מיכאל סלע
    צרו קשר
    אירועי תרבות
  • Date:09ראשוןדצמבר 2012

    ILASOL 26th Annual Meeting

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    שעה
    כל היום
    מיקום
    בניין ארתור ורושל בלפר למחקר ביורפואי
    יושב ראש
    Omer Markovitch
    דף בית
    צרו קשר
    כנסים
  • Date:09ראשוןדצמבר 201213חמישידצמבר 2012

    Dwek School on Nanoplasmonics

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    שעה
    כל היום
    מיקום
    מרכז כנסים על-שם דויד לופאטי
    יושב ראש
    Ofer Kedem
    מארגן
    יחידת שוהם-גן המדע
    דף בית
    צרו קשר
    כנסים
  • Date:09ראשוןדצמבר 2012

    The 28th Annual meeting of the Israeli Society for Oxygen and Free Radicals Research

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    שעה
    כל היום
    מיקום
    אולם ע"ש דולפי ולולה אבנר
    יושב ראש
    Robert Fluhr
    דף בית
    צרו קשר
    כנסים
  • Date:09ראשוןדצמבר 2012

    Special Faculty of Chemistry Colloquium - Prof. Martin Moskovits

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    שעה
    17:00 - 18:00
    כותרת
    Thirty Five Years of Surface Enhanced Raman Scattering
    מיקום
    מרכז כנסים על-שם דויד לופאטי
    מרצהProf. Martin Moskovits
    University of California
    מארגן
    הפקולטה לכימיה
    צרו קשר
    תקצירShow full text abstract about Thirty-five years of SERS Martin Moskovits Department of C...»
    Thirty-five years of SERS
    Martin Moskovits
    Department of Chemistry and Biochemistry
    University of California, Santa Barbara
    Scientists do not read the scientific literature. This is because, time, unlike other currencies that may be plentiful for awhile, then scarce, then plentiful again, time diminished monotonically, so that the triage one needs to make for professional success in science is simple: one either reads them, or writes them. SERS, whose inordinate enhancement was discovered by Jeanmaire and Van Duyne in 1977, has had a particularly rocky time in achieving mechanistic steady state. This is not due to the absence of a working model that was both explicative and predictive, and therefore useful in constructing new experiments. Such a model was already in place in the 1980s and supported by some excellent and sophisticated theory. (I mention the work of Metiu and Nitzan, as examples.) That model is the plasmonic model, which not only guided most of the successful experiments in SERS to date, but begat the field of Plasmonics in the bargain.
    Rather, the notion that SERS lacked a sound fundamental understanding was due to an inexplicable hostility to the plasmonic model of SERS by a few prominent workers, together with a reinforcement of the rejection of the plasmonic model following the announcement of single-molecule SERS (SM-SERS), since people (forgetting that Aravind, Nitzan and Metiu in 1981 predicted a 1010 enhancement factor in the hot spot between two, almost touching silver nanoparticles) could not fathom how so great an enhancement could arise from the concentration of electromagnetic fields as to permit single-molecule Raman detection. Following the announcement of SM-SERS, and stimulated by initiatives in nanotechnology, many entered the field of SERS. The fact that most SERS experiments involve rather simple chemistry, but somewhat subtle physics, did not help. It merely granted facile entry into the field, and allowed some to generate a great deal of interesting experimental observations and publish them with only a passing understanding of the underlying mechanism.
    By 1985, I believe most of us understood the way SERS worked rather well. Certainly well enough for me to have been able to state (based on the aggregate work of some two a dozen major contributors to SERS at that time) “… the majority view is that the largest contributor to the intensity amplification results from the electric field enhancement that occurs in the vicinity of small, interacting metal particles that are illuminated with light resonant or near resonant with the localized surface-plasmon frequency of the metal structure. Small in this context is gauged in relation to the wavelength of light. The special preparation required to produce the effect …is now understood to be necessary as a means for producing surfaces with appropriate
    electromagnetic resonances that may couple electromagnetic fields either by generating rough films or by placing small metal particles in close proximity to one another.”
    Still, even today, the mention of SERS still engenders comments such as “a phenomenon whose mechanism is not fully understood”, stated with the implication being that (unlike most other fields of science about which one can make that statement in the sense that one can always understand more) SERS is unusual in that after 35 years of work, people still apparently do random experiments wholly unguided by a successful theory. To be sure, the technology needed to nano-engineer plasmonic substrates, the computer power and the theories and codes needed to make regular nanostructures and carry out meaningful computations has improved enormously in the intervening 35 years. So that whereas 30 years ago one might have excused such a statement. Today the notion that SERS lacks a fundamental understanding is ludicrous.
    Of course, the theory of SERS is incomplete since a fully quantum theory of the effect is only partially developed.
    I have had the good fortune of witnessing the development of SERS from its inception. The talk will focus on some of the key people, experiments, insights and ideas, as well as some of the Quixotic individuals and notions that permeated SERS over the years, and how they led to our current understanding of SERS, and to our celebrating Chanukah at the Dwek School on Nanoplasmonics, at the Weizmann Institute in the year 5773.
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  • Date:10שנידצמבר 2012

    Faculty of Chemistry Colloquium - Prof. Vladimiro Mujica

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    שעה
    11:00 - 12:30
    כותרת
    MOLECULES AS SPIN POLARIZERS. A THEORITICAL EXAMINATION OF MODELS AND CHALLENGES
    מיקום
    אולם הרצאות ע"ש גרהרד שמידט
    מרצהPROFESSOR VLADIMIRO MUJICA
    Department of Chemistry and Biochemistry, Arizona State University
    מארגן
    הפקולטה לכימיה
    צרו קשר
    תקצירShow full text abstract about The striking experimental observation by Naaman and co-worke...»
    The striking experimental observation by Naaman and co-workers that monolayers of organic chiral molecules adsorbed on gold can act as electron spin polarizers and modulators has received a substantial amount of attention; partly because this type of behavior would naturally be associated to ferromagnetic or spin-active interfaces, but also because its understanding could pave the way for the fabrication of devices with a huge technological potential.

    In this colloquium, I will review the main theoretical approaches to the understanding of this problem with emphasis in our own scattering spin-dependent model, which places a crucial role on the enhancement of the spin-orbit interaction due to the high density of the monolayer. The enhanced spin-orbit interaction strongly couples the electron’s spin and spatial degrees of freedom and together with the chirality features of the material medium they have profound consequences in the electron transmission and scattering across the monolayer.

    I will also examine some of the remarkable magnetic properties of these systems in terms of a model for interfacial charge and spin transfer. Finally, I will conclude with an exploration of some of the challenges for the fabrication of molecular devices.
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  • Date:10שנידצמבר 2012

    The dynamics of genomic sequence evolution in experimental budding yeast populations

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    שעה
    14:00 - 14:00
    מיקום
    בניין ארתור ורושל בלפר למחקר ביורפואי
    מרצהProf. Michael Desai
    Harvard University, Cambridge, USA
    מארגן
    המחלקה לגנטיקה מולקולרית
    צרו קשר
    הרצאה
  • Date:10שנידצמבר 2012

    The Peri[heral Endocsnnabinoid/CB1 Receptor System: A novel thgerapeutic target for Obesity and the Metabolic Syndrome

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    שעה
    14:00 - 14:00
    מיקום
    בניין ע"ש מקס ולילאן קנדיוטי
    מרצהDr. Yossef Tam
    Lab of Physiologic Studies NIH USA
    מארגן
    המחלקה לאימונולוגיה ורגנרציה ביולוגית
    צרו קשר
    הרצאה
  • Date:10שנידצמבר 2012

    Physics of Hearing

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    שעה
    14:15 - 14:15
    מיקום
    בניין הפיזיקה ע"ש עדנה וק.ב. וייסמן
    מרצהRobijn Bruinsma
    UCLA
    מארגן
    המחלקה לפיזיקה של מערכות מורכבות
    צרו קשר
    תקצירShow full text abstract about Our exquisite sense of hearing has fascinated physicists for...»
    Our exquisite sense of hearing has fascinated physicists for more than a century. It has been well established that hearing is an active, energy consuming, non-linear process. Major experimental progress over the last decade now allows detailed comparison between theory and experiment. The talk will review the application of dynamical systems theory to active hearing as well as experimental tests.

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  • Date:10שנידצמבר 2012

    The Unique Games Conjecture: A status report

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    שעה
    14:30 - 14:30
    מיקום
    בניין יעקב זיסקינד
    מרצהBoaz Barak
    Microsoft Research New England
    מארגן
    הפקולטה למתמטיקה ומדעי המחשב
    צרו קשר
    הרצאה
  • Date:10שנידצמבר 2012

    מפגשים בחזית המדע

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    שעה
    19:15 - 21:00
    מיקום
    מכון דוידסון לחינוך מדעי
    מארגן
    יחידת שוהם במכון דוידסון
    דף בית
    צרו קשר
    הרצאה
  • Date:11שלישידצמבר 2012

    "VEGF: More than just angiogenic factor"

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    שעה
    10:00 - 11:00
    מיקום
    בניין וולפסון למחקר ביולוגי
    מרצהProf. Eli Keshet
    Faculty of Medicine - The Hebrew University of Jerusalem.
    מארגן
    המחלקה למדעים ביומולקולריים
    צרו קשר
    הרצאה
  • Date:11שלישידצמבר 2012

    Anisotropic Diffusion Kernels with Applications to Inverse Problems

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    שעה
    11:00 - 11:00
    מיקום
    בניין יעקב זיסקינד
    מרצהDan Kushnir
    Bell Laboratories, New Jersey
    מארגן
    הפקולטה למתמטיקה ומדעי המחשב
    צרו קשר
    הרצאה
  • Date:11שלישידצמבר 2012

    The legacy of Vivian Teichberg:Scavenging of excess brain glutamate to minimize neurological damage

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    שעה
    12:30 - 12:30
    מיקום
    אולם הרצאות ע"ש גרהרד שמידט
    מרצהWIS, Prof. David Mirelman
    מארגן
    המחלקה למדעי המוח
    צרו קשר
    תקצירShow full text abstract about Numerous clinical and preclinical investigators have reporte...»
    Numerous clinical and preclinical investigators have reported that in several important medical indications such as in (i) ischemic stroke, (ii) traumatic brain injuries (TBI), (iii) acute migraine cases, (iv) glioblastoma brain tumors and (v) epileptic attacks, there is a rapid accumulation in the brain of excess glutamate molecules which are excitotoxic and this leads to significant neurological damage and motoric incapacitations in patients.
    Vivian Teichberg introduced a method for scavenging of excess brain glutamate which consists of the intravenous administration of a recombinant preparation of the enzyme, Glutamate Oxaloacetate Transaminase (GOT). This causes a rapid decrease in blood glutamate levels and creates a gradient which leads to the efflux of the excess brain glutamate into the blood stream and reduces neurological damage.
    The main advantage of the Brain Glutamate Scavenging technology, over other drug treatments that are currently being developed, is that the augmentation of GOT activity occurs in the blood circulation and therefore, doesn’t affect normal brain neurophysiology, whereas the pharmacological inhibition of the activities of glutamate receptors or transport systems occurs in the brain, and could be followed by serious side effects in the central nervous system.

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  • Date:11שלישידצמבר 2012

    Mechanisms of Pluripotency and Epigenetic Reprogramming

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    שעה
    14:00 - 14:00
    מיקום
    בניין וולפסון למחקר ביולוגי
    מרצהDr. Yaqub (Jacob) Hanna
    Department of Molecular Genetics, WIS PI of the lab researching Mechanisms of Pluripotency and Epigenetic Reprogramming
    מארגן
    המחלקה לאימונולוגיה מערכתית
    צרו קשר
    הרצאה
  • Date:11שלישידצמבר 2012

    "Formation and Dynamics of the giant Mimivirus Factories"

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    שעה
    14:30 - 15:30
    מיקום
    בניין הלן ומילטון קימלמן
    מרצהYael Mutsafi
    PhD student of Prof. Avi Minsky
    מארגן
    המחלקה לביולוגיה מבנית וכימית
    צרו קשר
    הרצאה
  • Date:11שלישידצמבר 2012

    Accurate Fourier reconstruction of piecewise-smooth functions

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    שעה
    16:00 - 16:00
    מיקום
    בניין יעקב זיסקינד
    מרצהDima Batenkov
    מארגן
    הפקולטה למתמטיקה ומדעי המחשב
    צרו קשר
    הרצאה

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