Microwave Cavities and Detectors for Axion Research
Title | Microwave Cavities and Detectors for Axion Research PDF eBook |
Author | Gianpaolo Carosi |
Publisher | Springer |
Pages | 159 |
Release | 2018-07-19 |
Genre | Science |
ISBN | 3319927264 |
The nature of dark matter remains one of the preeminent mysteries in physics and cosmology. It appears to require the existence of new particles whose interactions to ordinary matter are extraordinarily feeble. One well-motivated candidate is the axion, an extraordinarily light neutral particle that may possibly be detected by looking for their conversion to detectable microwaves in the presence of a strong magnetic field. This has led to a number of experimental searches that are beginning to probe plausible axion model space and may discover the axion in the near future. These proceedings discuss the challenges of designing and operating tunable resonant cavities and detectors at ultralow temperatures. The topics discussed here have potential application far beyond the field of dark matter detection and may be applied to resonant cavities for accelerators as well as designing superconducting detectors for quantum information and computing applications. This work is intended for graduate students and researchers interested in learning the unique requirements for designing and operating microwave cavities and detectors for direct axion searches and to introduce several proposed experimental concepts that are still in the prototype stage.
Microwave Cavities and Detectors for Axion Research
Title | Microwave Cavities and Detectors for Axion Research PDF eBook |
Author | Gianpaolo Carosi |
Publisher | Springer Nature |
Pages | 173 |
Release | 2020-07-20 |
Genre | Science |
ISBN | 3030437612 |
The nature of dark matter remains one of the preeminent mysteries in physics and cosmology. It appears to require the existence of new particles whose interactions with ordinary matter are extraordinarily feeble. One well-motivated candidate is the axion, an extraordinarily light neutral particle that may possibly be detected by looking for their conversion to detectable microwaves in the presence of a strong magnetic field. This has led to a number of experimental searches that are beginning to probe plausible axion model space and may reveal the axion in the near future. These proceedings discuss the challenges of designing and operating tunable resonant cavities and detectors at ultralow temperatures. The topics discussed here have potential application far beyond the field of dark matter detection and may be applied to resonant cavities for accelerators as well as designing superconducting detectors for quantum information and computing applications. This work is intended for graduate students and researchers interested in learning the unique requirements for designing and operating microwave cavities and detectors for direct axion searches and to introduce several proposed experimental concepts that are still in the prototype stage.
Connecting Quarks with the Cosmos
Title | Connecting Quarks with the Cosmos PDF eBook |
Author | National Research Council |
Publisher | National Academies Press |
Pages | 222 |
Release | 2003-03-12 |
Genre | Science |
ISBN | 030917113X |
Advances made by physicists in understanding matter, space, and time and by astronomers in understanding the universe as a whole have closely intertwined the question being asked about the universe at its two extremesâ€"the very large and the very small. This report identifies 11 key questions that have a good chance to be answered in the next decade. It urges that a new research strategy be created that brings to bear the techniques of both astronomy and sub-atomic physics in a cross-disciplinary way to address these questions. The report presents seven recommendations to facilitate the necessary research and development coordination. These recommendations identify key priorities for future scientific projects critical for realizing these scientific opportunities.
The Origin of Chirality in the Molecules of Life (2nd Edition)
Title | The Origin of Chirality in the Molecules of Life (2nd Edition) PDF eBook |
Author | Albert Guijarro |
Publisher | Royal Society of Chemistry |
Pages | 243 |
Release | 2022-06-10 |
Genre | Science |
ISBN | 1839162341 |
This book provides an interdisciplinary review of one of the great unsolved mysteries that has fascinated scientists for over 150 years: the origin of chirality in biomolecules. It is fundamental, comprehensive and structured to be accessible for educational purposes.
Illuminating Dark Matter
Title | Illuminating Dark Matter PDF eBook |
Author | Rouven Essig |
Publisher | Springer Nature |
Pages | 168 |
Release | 2019-11-22 |
Genre | Science |
ISBN | 3030315932 |
Based on a Simons Symposium held in 2018, the proceedings in this volume focus on the theoretical, numerical, and observational quest for dark matter in the universe. Present ground-based and satellite searches have so far severely constrained the long-proposed theoretical models for dark matter. Nevertheless, there is continuously growing astrophysical and cosmological evidence for its existence. To address present and future developments in the field, novel ideas, theories, and approaches are called for. The symposium gathered together a new generation of experts pursuing innovative, more complex theories of dark matter than previously considered.This is being done hand in hand with experts in numerical astrophysical simulations and observational techniques—all paramount for deciphering the nature of dark matter. The proceedings volume provides coverage of the most advanced stage of understanding dark matter in various new frameworks. The collection will be useful for graduate students, postdocs, and investigators interested in cutting-edge research on one of the biggest mysteries of our universe.
The Search for Ultralight Bosonic Dark Matter
Title | The Search for Ultralight Bosonic Dark Matter PDF eBook |
Author | Derek F. Jackson Kimball |
Publisher | Springer Nature |
Pages | 375 |
Release | 2022-09-28 |
Genre | Science |
ISBN | 3030958523 |
A host of astrophysical measurements suggest that most of the matter in the Universe is an invisible, nonluminous substance that physicists call “dark matter.” Understanding the nature of dark matter is one of the greatest challenges of modern physics and is of paramount importance to our theories of cosmology and particle physics. This text explores one of the leading hypotheses to explain dark matter: that it consists of ultralight bosons forming an oscillating field that feebly interacts with light and matter. Many new experiments have emerged over the last decade to test this hypothesis, involving state-of-the-art microwave cavities, precision nuclear magnetic resonance (NMR) measurements, dark matter “radios,” and synchronized global networks of atomic clocks, magnetometers, and interferometers. The editors have gathered leading experts from around the world to present the theories motivating these searches, evidence about dark matter from astrophysics, and the diverse experimental techniques employed in searches for ultralight bosonic dark matter. The text provides a comprehensive and accessible introduction to this blossoming field of research for advanced undergraduates, beginning graduate students, or anyone new to the field, with tutorials and solved problems in every chapter. The multifaceted nature of the research – combining ideas and methods from atomic, molecular, and optical physics, nuclear physics, condensed matter physics, electrical engineering, particle physics, astrophysics, and cosmology – makes this introductory approach attractive for beginning researchers as well as members of the broader scientific community. This is an open access book.
Stars as Laboratories for Fundamental Physics
Title | Stars as Laboratories for Fundamental Physics PDF eBook |
Author | Georg G. Raffelt |
Publisher | University of Chicago Press |
Pages | 692 |
Release | 1996-05 |
Genre | Science |
ISBN | 9780226702728 |
Much of what we know about neutrinos is revealed by astronomical observations, and the same applies to the axion, a conjectured new particle that is a favored candidate for the main component of the dark matter of the universe.