Yoav Green
Weizmann Institute of Science
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Featured researches published by Yoav Green.
The Astrophysical Journal | 2011
Avishay Gal-Yam; Mansi M. Kasliwal; Iair Arcavi; Yoav Green; Ofer Yaron; Sagi Ben-Ami; Dong Xu; Assaf Sternberg; Robert Michael Quimby; S. R. Kulkarni; Eran O. Ofek; Richard Walters; Peter E. Nugent; Dovi Poznanski; Joshua S. Bloom; S. Bradley Cenko; Alexei V. Filippenko; Weidong Li; Jeffrey M. Silverman; Emma S. Walker; Mark Sullivan; K. Maguire; D. Andrew Howell; Paolo A. Mazzali; Dale A. Frail; D. F. Bersier; P. A. James; C. Akerlof; F. Yuan; Nicholas M. Law
The Palomar Transient Factory (PTF) is an optical wide-field variability survey carried out using a camera with a 7.8 deg^2 field of view mounted on the 48 inch Oschin Schmidt telescope at Palomar Observatory. One of the key goals of this survey is to conduct high-cadence monitoring of the sky in order to detect optical transient sources shortly after they occur. Here, we describe the real-time capabilities of the PTF and our related rapid multiwavelength follow-up programs, extending from the radio to the γ-ray bands. We present as a case study observations of the optical transient PTF10vdl (SN 2010id), revealed to be a very young core-collapse (Type II-P) supernova having a remarkably low luminosity. Our results demonstrate that the PTF now provides for optical transients the real-time discovery and rapid-response follow-up capabilities previously reserved only for high-energy transients like gamma-ray bursts.
The Astrophysical Journal | 2011
A. Corsi; Eran O. Ofek; Dale A. Frail; Dovi Poznanski; Iair Arcavi; Avishay Gal-Yam; S. R. Kulkarni; K. Hurley; Paolo A. Mazzali; D. A. Howell; Mansi M. Kasliwal; Yoav Green; D. Murray; Dong Xu; Sagi Ben-Ami; J. S. Bloom; S. B. Cenko; Nicholas M. Law; Peter E. Nugent; Robert Michael Quimby; Valentin Pal'Shin; J. R. Cummings; V. Connaughton; Kazutaka Yamaoka; William V. Boynton; I. G. Mitrofanov; John O. Goldsten
We present the discovery and follow-up observations of a broad-line Type Ic supernova (SN), PTF 10bzf (SN 2010ah), detected by the Palomar Transient Factory (PTF) on 2010 February 23. The SN distance is ≅218 Mpc, greater than GRB 980425/SN 1998bw and GRB 060218/SN 2006aj, but smaller than the other SNe firmly associated with gamma-ray bursts (GRBs). We conducted a multi-wavelength follow-up campaign with Palomar 48 inch, Palomar 60 inch, Gemini-N, Keck, Wise, Swift, the Allen Telescope Array, Combined Array for Research in Millimeter-wave Astronomy, Westerbork Synthesis Radio Telescope, and Expanded Very Large Array. Here we compare the properties of PTF 10bzf with those of SN 1998bw and other broad-line SNe. The optical luminosity and spectral properties of PTF 10bzf suggest that this SN is intermediate, in kinetic energy and amount of ^(56)Ni, between non-GRB-associated SNe like 2002ap or 1997ef, and GRB-associated SNe like 1998bw. No X-ray or radio counterpart to PTF 10bzf was detected. X-ray upper limits allow us to exclude the presence of an underlying X-ray afterglow as luminous as that of other SN-associated GRBs such as GRB 030329 or GRB 031203. Early-time radio upper limits do not show evidence for mildly relativistic ejecta. Late-time radio upper limits rule out the presence of an underlying off-axis GRB, with energy and wind density similar to the SN-associated GRB 030329 and GRB 031203. Finally, by performing a search for a GRB in the time window and at the position of PTF 10bzf, we find that no GRB in the interplanetary network catalog could be associated with this SN.
Physical Review E | 2014
Yoav Green; Shahar Shloush; Gilad Yossifon
This study extends previous analytical solutions of concentration polarization occurring solely in the depleted region, to the more realistic geometry consisting of a three-dimensional (3D) heterogeneous ion-permselective medium connecting two opposite microchambers (i.e., a three-layer system). Under the local electroneutrality approximation, the separation of variable methods is used to derive an analytical solution of the electrodiffusive problem for the two opposing asymmetric microchambers. The assumption of an ideal permselective medium allows for the analytic calculation of the 3D concentration and electric potential distributions as well as a current-voltage relation. It is shown that any asymmetry in the microchamber geometries will result in current rectification. Moreover, it is demonstrated that for non-negligible microchamber resistances, the conductance does not exhibit the expected saturation at low concentrations but instead shows a continuous decrease. The results are intended to facilitate a more direct comparison between theory and experiments, as now the voltage drop is across a realistic 3D and three-layer system.
Physical Review E | 2015
Yoav Green; Sinwook Park; Gilad Yossifon
To bridge the gap between single and isolated pore systems to multipore systems, such as membranes and electrodes, we studied an array of nanochannels with varying interchannel spacing that controlled the degree of channel communication. Instead of treating them as individual channels connected in parallel or an assembly like a homogeneous membrane, this study resolves the pore-pore interaction. We found that increased channel isolation leads to current intensification, whereas at high voltages electroconvective effects control the degree of communication via suppression of the diffusion layer growth.
Nano Letters | 2016
Yoav Green; Ran Eshel; Sinwook Park; Gilad Yossifon
Current nanochannel system paradigm commonly neglects the role of the interfacing microchannels and assumes that the ohmic electrical response of a microchannel-nanochannel system is solely determined by the geometric properties of the nanochannel. In this work, we demonstrate that the overall response is determined by the interplay between the nanochannel resistance and various microchannel attributed resistances. Our experiments confirm a recent theoretical prediction that in contrast to what was previously assumed at very low concentrations the role of the interfacing microchannels on the overall resistance becomes increasingly important. We argue that the current nanochannel-dominated conductance paradigm can be replaced with a more correct and intuitive microchannel-nanochannel-resistance-model-based paradigm.
Physical Review E | 2015
Yoav Green; Gilad Yossifon
The current study extends previous analytical and numerical solutions of chronopotentiometric response of one-dimensional systems consisting of three layers to the more realistic two-dimensional (2D) heterogeneous ion-permselective medium. An analytical solution for the transient concentration-polarization problem, under the local electroneutrality approximation and assumption of ideal permselectivity, was obtained using the Laplace transform and separation of variables technique. Then the 2D electric potential was obtained numerically and was compared to the full Poisson-Nernst-Planck solution. It was then shown that the resultant voltage drop across the system varies between the initial Ohmic response and that of the steady state accounting for concentration polarization. Also, the field-focusing effect in a 2D system is shown to result in a faster depletion of ions at the permselective interface.
The Astrophysical Journal | 2011
Maria Rebecca Drout; Alicia M. Soderberg; Avishay Gal-Yam; S. Bradley Cenko; Derek B. Fox; Douglas C. Leonard; David J. Sand; Dae-Sik Moon; Iair Arcavi; Yoav Green
Monthly Notices of the Royal Astronomical Society | 2012
S. Bradley Cenko; Joshua S. Bloom; S. R. Kulkarni; Linda E. Strubbe; Adam A. Miller; Nathaniel R. Butler; Robert Michael Quimby; Avishay Gal-Yam; Eran O. Ofek; Eliot Quataert; Lars Bildsten; Dovi Poznanski; Daniel A. Perley; Adam N. Morgan; Alexei V. Filippenko; Dale A. Frail; Iair Arcavi; Sagi Ben-Ami; A. Cucchiara; C. D. Fassnacht; Yoav Green; Isobel M. Hook; D. Andrew Howell; David J. Lagattuta; Nicholas M. Law; Mansi M. Kasliwal; Peter E. Nugent; Jeffrey M. Silverman; Mark Sullivan; Shriharsh P. Tendulkar
The Astrophysical Journal | 2011
Mansi M. Kasliwal; S. R. Kulkarni; Iair Arcavi; Robert Michael Quimby; Eran O. Ofek; Peter E. Nugent; J. Jacobsen; Avishay Gal-Yam; Yoav Green; Ofer Yaron; Derek B. Fox; Jacob L. Howell; S. Bradley Cenko; I. K. W. Kleiser; Joshua S. Bloom; Adam D. Miller; Weidong Li; Alexei V. Filippenko; Dan L. Starr; Dovi Poznanski; Nicholas M. Law; George Helou; Dale A. Frail; James D. Neill; Karl Forster; Christopher D. Martin; Shriharsh P. Tendulkar; Neil Gehrels; J. A. Kennea; Mark Sullivan
Physical Review E | 2013
Yoav Green; Gilad Yossifon