Books on the topic 'Pulsar timing'

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1

Mingarelli, Chiara M. F. Gravitational Wave Astrophysics with Pulsar Timing Arrays. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-18401-2.

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2

van Haasteren, Rutger. Gravitational Wave Detection and Data Analysis for Pulsar Timing Arrays. Berlin, Heidelberg: Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-39599-4.

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3

Audley, Michael Damian. A broad-band spectral and timing study of the X-ray binary system Centaurus X-3. Greenbelt, Md: Laboratory for High Energy Astrophysics, National Aeronautics and Space Administration, Goddard Space Flight Center, 1998.

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4

Audley, Michael Damian. A broad-band spectral and timing study of the X-ray binary system Centaurus X-3. Greenbelt, Md: Laboratory for High Energy Astrophysics, National Aeronautics and Space Administration, Goddard Space Flight Center, 1998.

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5

Audley, Michael Damian. A broad-band spectral and timing study of the X-ray binary system Centaurus X-3. Greenbelt, Md: Laboratory for High Energy Astrophysics, National Aeronautics and Space Administration, Goddard Space Flight Center, 1998.

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6

Audley, Michael Damian. A broad-band spectral and timing study of the X-ray binary system Centaurus X-3. Greenbelt, Md: Laboratory for High Energy Astrophysics, National Aeronautics and Space Administration, Goddard Space Flight Center, 1998.

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7

van, Paradijs J., Maitzen H. M. 1943-, and European Astrophysics Doctoral Network, eds. Galactic high-energy astrophysics ; High-accuracy timing and positional astronomy: Lectures held at the Astrophysics School IV, organized by the European Astrophysics Doctoral Network (EADN) in Graz, Austria, 19-31 August 1991. Berlin: Springer-Verlag, 1993.

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8

Maggiore, Michele. Stochastic backgrounds and pulsar timing arrays. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198570899.003.0014.

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9

Chiara M. F. M. F. Mingarelli. Gravitational Wave Astrophysics with Pulsar Timing Arrays. Springer, 2015.

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10

Trustees, Columbia University, Columbia Astrophysics Laboratory (Columbia University), Compton Observatory, and United States. National Aeronautics and Space Administration., eds. Timing the Geminga pulsar with high-energy gamma-rays: Final technical report for NAG5-2051. [Washington, DC?]: National Aeronautics and Space Administration, Compton Gamma-Ray Observatory, 1997.

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11

Timing the Geminga pulsar with high-energy gamma-rays: Final technical report for NAG5-2051. [Washington, DC?]: National Aeronautics and Space Administration, Compton Gamma-Ray Observatory, 1997.

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12

United States. National Aeronautics and Space Administration., ed. TIMING THE GEMINGA PULSAR WITH HIGH-ENERGY GAMMA-RAYS FINAL REPORT... NASA-CR-204445... JAN. 5, 1998. [S.l: s.n., 1998.

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13

1967-, Arzoumanian Zaven, Hooft F. van der, and Heuvel, Edward Peter Jacobus van den, 1940-, eds. Pulsar timing, general relativity, and the internal structure of neutron stars: Proceedings of the colloquium, Amsterdam, 24-27 September 1996. Amsterdam: Royal Netherlands Academy of Arts and Sciences, 1999.

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14

Maggiore, Michele. Supermassive black holes. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198570899.003.0007.

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The supermassive BH at the center of our Galaxy. Formation and evolution of SMBH binaries. Perspective for detection with LISA. Extreme mass ratio inspirals (EMRIs). Computation of the EMRI’s waveform with the self-force approach. Stochastic backgrounds of gravitational waves produced by SMBH binaries. Perspective for detection at pulsar timing arrays
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15

Maggiore, Michele. Gravitational Waves. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198570899.001.0001.

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A comprehensive and detailed account of the physics of gravitational waves and their role in astrophysics and cosmology. The part on astrophysical sources of gravitational waves includes chapters on GWs from supernovae, neutron stars (neutron star normal modes, CFS instability, r-modes), black-hole perturbation theory (Regge-Wheeler and Zerilli equations, Teukoslky equation for rotating BHs, quasi-normal modes) coalescing compact binaries (effective one-body formalism, numerical relativity), discovery of gravitational waves at the advanced LIGO interferometers (discoveries of GW150914, GW151226, tests of general relativity, astrophysical implications), supermassive black holes (supermassive black-hole binaries, EMRI, relevance for LISA and pulsar timing arrays). The part on gravitational waves and cosmology include discussions of FRW cosmology, cosmological perturbation theory (helicity decomposition, scalar and tensor perturbations, Bardeen variables, power spectra, transfer functions for scalar and tensor modes), the effects of GWs on the Cosmic Microwave Background (ISW effect, CMB polarization, E and B modes), inflation (amplification of vacuum fluctuations, quantum fields in curved space, generation of scalar and tensor perturbations, Mukhanov-Sasaki equation,reheating, preheating), stochastic backgrounds of cosmological origin (phase transitions, cosmic strings, alternatives to inflation, bounds on primordial GWs) and search of stochastic backgrounds with Pulsar Timing Arrays (PTA).
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16

Wright, A. G. Statistical processes. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780199565092.003.0004.

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Two statistical processes affect performance: one concerns photon detection at the photocathode (binomial); and the other, gain at each dynode (Poisson). The combined statistical processes dictate resolution, both timing and pulse height. They are best examined using generating functions that are both elegant and capable of providing answers more efficiently than traditional approaches. The requirement for steady and pulsed light sources is an important one for testing and setting up procedures. The use of moments to test the quality of performance is illustrated for a steady DC light source. Amplification provided by a dynode stack is a cascade process, leading to dispersion in gain, and is also ideally handled with generating functions. Theory is developed for essentially continuous pulse height distributions, such as those produced by a multichannel analyser. Arrival time statistics for scintillators are investigated analytically and by Monte Carlo simulation. Treatment is given for dead time and scaling.
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17

E, Boynton Paul, and United States. National Aeronautics and Space Administration., eds. Pulse-timing studies of X-ray pulsars: Final technical report for grant NAG 8-695, January 1, 1988 -- December 31, 1991. Seattle, Wash: University of Washington, 1992.

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18

E, Boynton Paul, and United States. National Aeronautics and Space Administration., eds. Pulse-timing studies of X-ray pulsars: Final technical report for grant NAG 8-695, January 1, 1988 -- December 31, 1991. Seattle, Wash: University of Washington, 1992.

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19

Pulse-timing studies of X-ray pulsars: Final technical report for grant NAG 8-695, January 1, 1988 -- December 31, 1991. Seattle, Wash: University of Washington, 1992.

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20

Lo, Meng-chen, Marie-France Marin, Alik S. Widge, and Mohammed R. Milad. Device-Based Treatment for PTSD. Edited by Frederick J. Stoddard, David M. Benedek, Mohammed R. Milad, and Robert J. Ursano. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190457136.003.0025.

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Device-based neuromodulation is an emerging tool with great potential for significant scientific and clinical implications for a number of mental disorders. Neuromodulation techniques deliver electro-magnetic pulses into the brain via invasive or noninvasive electrodes, with various timing and stimulation parameters. The stimulation is thought to work as a “brain pacemaker” that either activates or inactivates targeted brain regions to restore normal homeostasis. There have been significant recent efforts to explore the clinical utility of device-based approaches for the treatment of mood, anxiety disorders, and to a limited extent posttraumatic stress disorder (PTSD). This chapter outlines the scientific underpinnings and rationale for various device-based treatments of PTSD, highlights positive results of studies in other mental disorders, and summarizes the limited clinical data related specifically to the treatment of PTSD and other trauma- and stressor-related disorders to date.
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21

Sakdan, Mohd Fo'ad, and Muhammad Fuad Othman. Pengenalan kepada pengurusan konflik antarabangsa. UUM Press, 2012. http://dx.doi.org/10.32890/9789675311468.

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Buku ini menerangkan secara umum perihal konflik yang sering berlaku dalam hubungan antarabangsa.Penjelasan yang terkandung dalam sembilan bab ini diharap dapat dimanfaatkan oleh pembaca dan masyarakat tentang pelbagai konflik dan cara menanganinya sama ada secara positif mahupun sebaliknya. Bab pertama memperkenalkan beberapa teori utama dalam konflik antarabangsa yang berupaya memberi idea tentang sebab sesuatu konflik itu wujud.Bab kedua pula menghuraikan faktor-faktor atau pihak yang berperanan dalam konflik hubungan antarabangsa melalui penjelasan tentang faktor-faktor dan instrumen yang sering diterima guna dalam konflik berkenaan.Bab-bab seterusnya memperincikan lagi konflik-konflik utama yang sering menyebabkan pertelingkahan, permusuhan dan peperangan dalam kalangan masyarakat dan negara umumnya.Hal ini melibatkan konflik ideologi, ekonomi, etnik, agama dan sempadan. Akhirnya buku ini menghuraikan beberapa pendekatan yang sering dipraktikkan dalam usaha menangani konflik yang wujud meliputi tatacara kaedah perundingan, perantaraan, timbang tara dan juga pembentukan pasukan keselamatan. Buku ini diharap mampu menggambarkan senario menyeluruh tentang konflik-konflik yang berlaku dalam arena hubungan antarabangsa masa kini.
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