The Experts below are selected from a list of 18 Experts worldwide ranked by ideXlab platform

Hase Y. - One of the best experts on this subject based on the ideXlab platform.

  • The I.r. And Raman Spectra Of Tetrabromophthalic Anhydride, Tetrabromophthalimide, N-d-tetrabromophthalimide And Potassium Tetrabromophthalimide
    2015
    Co-Authors: Hase Y.
    Abstract:

    The i.r. (4000-180 cm-1) and Raman (4000-40 cm-1) spectra of tetrabromophthalic anhydride, tetrabromophthalimide, N-d-tetrabromophthalimide and potassium tetrabromophthalimide have been investigated for polycrystalline compounds. The observed frequencies have been assigned tentatively on the basis of C2ν molecular symmetry. A normal coordinate analysis has been carried out on an assumption of the valence force field and the CO stretching vibrations of OCXCO Resonating System have been discussed using the obtained force constants. © 1980.362213218Hase, Davanzo, Kawai, Sala, (1976) J. Mol. Struct., 30, p. 37Hase, (1978) J. Mol. Struct., 40, p. 33Hase, (1979) J. Mol. Struct., 52, p. 163Salzberg, Supniewski, (1941) Org. Syn., 1, p. 119Ito, Moriya, Kashino, Haisa, Topochemical Studies. VII. The Crystal and Molecular Structures of Tetrachlorophthalic Acid Hemihydrate and Tetrabromophthalic Anhydride (1975) Bulletin of the Chemical Society of Japan, 48, p. 3078Mirone, Chiorboli, (1962) Spectrochim. Acta, 18, p. 1425Di Lauro, Califano, Adembri, (1968) J. Mol. Struct., 2, p. 173Baranska, Chritensen, Nicolaisen, Nielsen, Klaboe, On the Vibrational Spectra of Maleic Anhydride. (1971) Acta Chemica Scandinavica, 25, p. 2364Rogstad, Klaboe, Cyvin, Cyvin, Christensen, (1972) Spectrochim. Acta, 28 A, p. 111Rogstad, Klaboe, Cyvin, Cyvin, Christensen, (1972) Spectrochim. Acta, 28 A, p. 123Rogstad, Klaboe, Baranska, Bjarnov, Christensen, Nielsen, Cyvin, Cyvin, (1974) J. Mol. Struct., 20, p. 403Hase, Kawai, Sala, (1975) J. Mol. Struct., 26, p. 297Hase, Sala, (1976) J. Mol. Struct., 31, p. 23Woldbaek, Klaboe, Nielsen, (1975) J. Mol. Struct., 27, p. 283Woldbaek, Klaboe, Nielsen, (1975) J. Mol. Struct., 28, p. 269Woldbaek, Klaboe, Christensen, The Vibrational Spectra of Succinimide and N-Deuteriosuccinimide. (1976) Acta Chemica Scandinavica, 30 A, p. 531Woldbaek, Klaboe, Christensen, The Vibrational Spectra of N-Chloro, N-Bromo-, and N-Iodosuccinimide. (1976) Acta Chemica Scandinavica, 30 A, p. 547Fortunato, Giorgini, (1977) J. Mol. Struct., 37, p. 27Hase, (1973) Computer programs of normal coordinate analysis, LEM, , Universidade de Sã Paulo, Sã PauloMiyazawa, Force Constants, Normal Modes and Potential Energy Distribution of (1955) Nippon kagaku zassi, 76, p. 1132Mann, Shimanouchi, Meal, Fano, (1957) J. Chem. Phys., 27, p. 43Wilson, Jr., Decius, Cross, (1955) Molecular Vibrations, , McGraw-Hill, New YorkMatsuo, Carbonyl Absorption Bands in the Infrared Spectra of Some Cyclic Imides with a Five-membered Ring (1964) Bulletin of the Chemical Society of Japan, 37, p. 1844Popov, Khomenko, Shorygin, (1965) Izv. Akad. Nauk. SSSR, Ser. Khim., 1, p. 51Lee, Kumler, (1961) J. Am. Chem. Soc., 83, p. 4586Bellamy, Williams, (1957) J. Chem. Soc., p. 4257Hase, (1978) Eclética Quimica, 3, p. 47Varsányi, (1969) Vibrational Spectra of Benzene Derivatives, , Academic Press, New Yor

Vinayak Pachkawade - One of the best experts on this subject based on the ideXlab platform.

  • a System level modeling of noise in coupled Resonating mems sensors
    Proceedings of 1st International Electronic Conference - Futuristic Applications on Electronics, 2020
    Co-Authors: Vinayak Pachkawade
    Abstract:

    This paper presents realistic System-level modeling of effective noise sources in a coupled Resonating mode-localized MEMS sensors. A governing set of differential equations are used to build a numerical model of a mechanical noise source in a coupled-resonator sensor and an effective thermo-mechanical noise is quantified through the simulation performed via SIMULINK. On a similar note, an effective noise that stems from the electronic readout used for the coupled Resonating MEMS sensors is also quantified. Various noise sources in electronic readout are identified and the contribution of each is quantified. A comparison between an effective mechanical and electronic noise in a sensor System aids in identifying the dominant noise source in a sensor System. A method to optimize the System noise floor for an amplitude-based readout is presented. The proposed models present a variety of operating conditions, such as finite quality factor, varying coupled electrostatic spring strength, and operation with in-phase and out-of-phase mode. The proposed models aim to study the impact of fundamental noise processes that govern the ultimate resolution into a coupled Resonating System used for various sensing applications.

Alexey Trubarov - One of the best experts on this subject based on the ideXlab platform.

  • parametric oscillation of a moving mirror driven by radiation pressure in a superconducting fabry perot Resonating System
    arXiv: Optics, 2012
    Co-Authors: Raymond Y Chiao, Luis A Martinez, Stephen J Minter, Alexey Trubarov
    Abstract:

    A moving pellicle superconducting mirror, which is driven by radiation pressure on its one side, and by the Coulomb force on its other side, can become a parametric oscillator that can generate microwaves when placed within a high-Q superconducting Fabry-Perot resonator System. A paraxial-wave analysis shows that the fundamental resonator eigenmode needed for parametric oscillation is the TM011 mode. A double Fabry-Perot structure is introduced to resonate the pump and the idler modes, but to reject the parasitic anti-Stokes mode. The threshold for oscillation is estimated based on the radiation-pressure coupling of the pump to the signal and idler modes, and indicates that the experiment is feasible to perform.

Raymond Y Chiao - One of the best experts on this subject based on the ideXlab platform.

  • parametric oscillation of a moving mirror driven by radiation pressure in a superconducting fabry perot Resonating System
    arXiv: Optics, 2012
    Co-Authors: Raymond Y Chiao, Luis A Martinez, Stephen J Minter, Alexey Trubarov
    Abstract:

    A moving pellicle superconducting mirror, which is driven by radiation pressure on its one side, and by the Coulomb force on its other side, can become a parametric oscillator that can generate microwaves when placed within a high-Q superconducting Fabry-Perot resonator System. A paraxial-wave analysis shows that the fundamental resonator eigenmode needed for parametric oscillation is the TM011 mode. A double Fabry-Perot structure is introduced to resonate the pump and the idler modes, but to reject the parasitic anti-Stokes mode. The threshold for oscillation is estimated based on the radiation-pressure coupling of the pump to the signal and idler modes, and indicates that the experiment is feasible to perform.

Luis A Martinez - One of the best experts on this subject based on the ideXlab platform.

  • parametric oscillation of a moving mirror driven by radiation pressure in a superconducting fabry perot Resonating System
    arXiv: Optics, 2012
    Co-Authors: Raymond Y Chiao, Luis A Martinez, Stephen J Minter, Alexey Trubarov
    Abstract:

    A moving pellicle superconducting mirror, which is driven by radiation pressure on its one side, and by the Coulomb force on its other side, can become a parametric oscillator that can generate microwaves when placed within a high-Q superconducting Fabry-Perot resonator System. A paraxial-wave analysis shows that the fundamental resonator eigenmode needed for parametric oscillation is the TM011 mode. A double Fabry-Perot structure is introduced to resonate the pump and the idler modes, but to reject the parasitic anti-Stokes mode. The threshold for oscillation is estimated based on the radiation-pressure coupling of the pump to the signal and idler modes, and indicates that the experiment is feasible to perform.