PPT-Traveling wave, lumped element kinetic inductance parametric amplifier for detector readout
Author : marina-yarberry | Published Date : 2018-02-14
Saptarshi Chaudhuri Dale Li Kent Irwin Clint Bockstiegel Johannes Hubmayr Joel Ullom Michael Vissers Jiansong Gao July 20 2017 1 TES MKID benefit from
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Traveling wave, lumped element kinetic inductance parametric amplifier for detector readout: Transcript
Saptarshi Chaudhuri Dale Li Kent Irwin Clint Bockstiegel Johannes Hubmayr Joel Ullom Michael Vissers Jiansong Gao July 20 2017 1 TES MKID benefit from quantumlimited amplifier. Richard E Denton. Dartmouth College. What Do We Mean by Kinetic Effects?. Related to kinetic theory, but more general. Kinetic theory is a description of a plasma using a phase space distribution. In a phase space distribution, there is assumed to be a smooth distribution of particles with respect to spatial position and velocity. /SBS. – Front Tracker. PARAMETER. DESIGN VALUE. Microstrip. Silicon Detector. Number of tiles/plane and size. 2 @@@. Number of planes. 2. Size of. the single plane. @@@. Number of . microstrips. qubits. P. . Bertet. SPEC, CEA Saclay (France. ),. Quantronics. group. Outline. Lecture 1: Basics of . superconducting. . qubits. Lecture 2: Qubit readout and circuit quantum electrodynamics. Lecture 3: 2-. Taku. . Gunji. Center for Nuclear Study . University of Tokyo. For the ALICE-FOCAL Team. 1. Outline. Collaboration . Summary of . p. hysics and measurements . Requirements of the FOCAL. Conceptual Detector Design. ECB 3211 – RF & Microwave Engineering. Module - I. SOURCE: RF & Microwave Handbook, CRC Press. 1. Lumped Components. Lumped components provide . impedance matching. , attenuation, filtering, DC bypassing, and DC . Amos Breskin. Grazie SILVIA & her local TEAM !. all committee members !. Grazie . CHEF RUI !. “cooking” for us a variety of . “. TASTY MPGD TOYS. ” . The prime roles of our community:. . Antonino . Miceli. . FNAL . Research Techniques Seminar. April 24, 2012. Outline. Why Superconducting Detectors?. Detector Requirements. Applications. Overview of MKIDs. MKID activities at Argonne. MKID resonator readout . . . The conventional readout techniques employ a large number of electronic channels, which poses a big challenge to the further applications of MPGDs. By changing the readout electrode’s structure and multiplexing the readout channels, an induced position encoding technique for micro-channel plate detector was developed by D. . MicroTCA. platform with embedded sub-ns WR synchronization. G. .. Kasprowicz (WUT). 2. Outline. NICA . collider. & . Cosmic Ray Detector – Goals. SIPM AFE. SIPM readout chain based on Open Source HW. Michael Fowler, . UVa. Today’s Topics. The wave equation. Energy and power of waves. Superposition. Standing waves as sums of traveling waves. Fourier series. Harmonic Waves. A simple harmonic wave has sinusoidal form:. Orlando . Quaranta. Thomas Cecil. Lisa . Gades. Antonino. . Miceli. Advanced Photon Source. Overview. Motivation. Introduction . to MKIDs. The TKID Concept. TKID Development at Argonne. Fermilab. - MKID and Cosmology Workshop - August 26, 2013. . Advances in CCD Applications with Sub Electron Noise Techniques. Juan Estrada, Gustavo . Cancelo. . 07/19/2011. R&D Projects. General . CCD R&D will benefit the following projects:. DAMIC. Previous work [1] studied the use of PTP and Synchronous Ethernet (. SyncE. ) for synchronization of detector data from multiple Pixie-Net modules, an earlier and smaller version of the digitizing and pulse processing electronics described here. The time resolution for coincident events reached ~10ns FWHM with PTP synchronization and 200-800ps FWHM with . 1. Department of Nuclear Engineering and Radiological Sciences, . . University of Michigan, Ann Arbor. 2. Air Force Research Laboratory, Kirtland AFB, Albuquerque, NM. 3. . Leidos. . Corporation, Reston, VA.
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