Active Matter Within and Around Us

Active Matter Within and Around Us
Author: Len Pismen
Publisher: Springer Nature
Total Pages: 227
Release: 2021-02-15
Genre: Science
ISBN: 3030684210

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This book presents a comprehensive review of various aspects of the novel and rapidly developing field of active matter, which encompasses a wide variety of self-organized self-driven energy-consuming media or agents. Most naturally occurring examples are of biological origin, spanning all scales from intracellular structures to swimming and crawling cells and microorganisms, to living tissues, bacterial colonies and flocks of birds. But the field also encompasses artificial systems, from colloids to soft robots. Intrinsically out of equilibrium and free of constraints of time-reversal symmetry, such systems display a range of surprising and unusual behaviors.​ In this book, the author emphasizes connections between fluid-mechanical, material, biological and technological aspects of active matter. He employs a minimum of mathematical tools, ensuring that the presentation is accessible to a wider scientific community. Richly illustrated, it gives the reader a clear picture of this fascinating field, its diverse phenomena and its open questions.

Colloidal Active Matter

Colloidal Active Matter
Author: Francesc Sagués Mestre
Publisher: CRC Press
Total Pages: 308
Release: 2022-10-07
Genre: Science
ISBN: 1000684806

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What do bird flocks, bacterial swarms, cell tissues, and cytoskeletal fluids have in common? They are all examples of active matter. This book explores how scientists in various disciplines, from physics to biology, have collated a solid corpus of experimental designs and theories during the last two decades to decipher active systems. The book addresses, from a multidisciplinary viewpoint, the field of active matter at a colloidal scale. Concepts, experiments, and theoretical models are put side by side to fully illuminate the subtilities of active systems. A large variety of subjects, from microswimmers or driven colloids to self-organized active fluids, are analysed within a unified perspective. Generic collective effects of self-propelled or driven colloids, such as motility-induced flocking, and new paradigms, such as the celebrated concept of active nematics in reconstituted protein-based fluids, are discussed using well-known experimental scenarios and recognized theories. Topics are covered with rigor and in a self-consistent way, reaching both practitioners and newcomers to the field. The diversity of topics and conceptual challenges in active matter have long hampered the chance to explore the field with a general perspective. This monograph, the first single-authored title on active matter, is intended to fill this gap by bridging disparate experimental and theoretical interests from colloidal soft matter to cell biophysics.

Soft and Fragile Matter

Soft and Fragile Matter
Author: Michael E. Cates
Publisher: CRC Press
Total Pages: 956
Release: 2000-01-01
Genre: Science
ISBN: 9781420033519

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Covering colloids, polymers, surfactant phases, emulsions, and granular media, Soft and Fragile Matter: Nonequilibrium Dynamics, Metastability and Flow (PBK) provides self-contained and pedagogical coverage of the rapidly advancing field of systems driven out of equilibrium, with a strong emphasis on unifying conceptual principles rather than material-specific details. Written by internationally recognized experts, the book contains introductions at the level of a graduate course in soft condensed matter and statistical physics to the following areas: experimental techniques, polymers, rheology, colloids, computer simulation, surfactants, phase separation kinetics, driven systems, structural glasses, slow dynamics, and granular materials. These topics lead to a range of exciting applications at the forefront of current research, including microplasticity of emulsions, sequence design of copolymers, branched polymer dynamics, nucleation kinetics in colloids, multiscale modeling, flow-induced surfactant textures, fluid demixing under shear, two-time correlation functions, chaotic sedimentation dynamics, and sound propagation in powders. Balancing theory, simulation, and experiment, this broadly-based, pedagogical account of a rapidly developing field is an excellent compendium for graduate students and researchers in condensed matter physics, materials science, and physical chemistry.

Out-of-equilibrium Soft Matter

Out-of-equilibrium Soft Matter
Author: Christina Kurzthaler
Publisher: Royal Society of Chemistry
Total Pages: 411
Release: 2023-03-24
Genre: Science
ISBN: 1839162295

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This book provides an expert introduction to active fluids systems, covering simple to complex environments.

Active Matter and Nonequilibrium Statistical Physics

Active Matter and Nonequilibrium Statistical Physics
Author: Julien Tailleur
Publisher: Oxford University Press
Total Pages: 673
Release: 2022-10-21
Genre:
ISBN: 0192858319

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From molecular motors to bacteria, from crawling cells to large animals, active entities are found at all scales in the biological world. Active matter encompasses systems whose individual constituents irreversibly dissipate energy to exert self-propelling forces on their environment. Over the past twenty years, scientists have managed to engineer synthetic active particles in the lab, paving the way towards smart active materials. This book gathers a pedagogical set of lecture notes that cover topics in nonequilibrium statistical mechanics and active matter. These lecture notes stem from the first summer school on Active Matter delivered at the Les Houches school of Physics. The lectures covered four main research directions: collective behaviours in active-matter systems, passive and active colloidal systems, biophysics and active matter, and nonequilibrium statistical physics--from passive to active.

Physics of Complex Colloids

Physics of Complex Colloids
Author: C. Bechinger
Publisher: IOS Press
Total Pages: 639
Release: 2013-06-24
Genre: Science
ISBN: 1614992789

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Colloids are systems comprised of particles of mesoscopic size suspended in a liquid. They have recently been attracting increased attention from scientists and engineers due to the fact that they are nowadays present in many industrial products such as paints, oil additives, electronic ink displays and drugs. Colloids also serve as versatile model systems for phenomena and structures from solid-state physics, surface science and statistical mechanics, and can easily be studied using tabletop experiments to provide insight into processes not readily accessible in atomic systems. This book presents the lectures delivered at the 2012 Enrico Fermi School ‘Physics of Complex Colloids’, held in Varenna, Italy, in July 2012. The school addressed experimental, theoretical and numerical results and methods, and the lectures covered a broad spectrum of topics from the starting point of the synthesis of colloids and their use in commercial products. The lectures review the state-of-the-art of colloidal science in a pedagogical way, discussing both the basics and the latest results, and this book will serve as a reference for both students and experts in this rapidly growing field.

Dynamics Of Active Colloids In Liquid Crystal Environment

Dynamics Of Active Colloids In Liquid Crystal Environment
Author: Mojtaba Rajabi
Publisher:
Total Pages: 0
Release: 2023
Genre:
ISBN:

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Dynamics of micrometer-scale active colloids in complex fluids is of great fundamental and application interest. In this dissertation, we study the dynamics of active colloids placed in an orientationally ordered liquid. We demonstrate that the liquid crystal (LC) environment allows extracting useful work from the random motion of microswimmers and ambient external field in the form of self-propulsion of colloids. We also show that the simplest microswimmer in a low Reynolds number regime in an LC is a sphere; in contrast with the complicated structures and modes necessary for swimming in isotropic fluids. We demonstrate that a water droplet containing a suspension of randomly swimming bacteria placed in a nematic LC environment propels itself unidirectionally. The droplets with a hyperbolic hedgehog (HH) point defect in their vicinity that are of polar symmetry propel themselves while the droplets with Saturn ring (SR) director configuration of quadrupolar symmetry do not propel. In HH droplets, the propulsion is driven by the activity of bacteria; the droplets with higher bacteria concentration move faster, while the droplets with no bacteria or immotile bacteria do not propel. The bacteria generate a chaotic flow inside the droplet that is transferred to the nematic through the interface. The polar director structure around the HH droplet rectifies this chaotic flow into the directional self-propulsion of the droplet. The mechanism of motion is rooted in the coupling of flow and the director orientation in the nematic. The flow that is transferred into the nematic faces different resistances from the director structure around the droplet while streaming toward the HH as compared to the opposite direction. Thus, the net displacement is in the direction with less resistance. We show that the responsiveness of the LC to external cues such as electric field and light provides the means to dynamically control the speed and trajectories of the active droplets. An in-plane electric field reorients the director through dielectric coupling and thus redirects the droplet. Also, a high electric field transforms the HH into a disclination ring and thus reduces the droplet speed. When the ring becomes an equatorial SR the droplet stops. A focused laser beam is used to control the droplet motility and polarity of motion. The laser locally melts the director around the droplet and reversibly transforms the SR to HH, thus controlling the droplet motility. The beam is focused on the desired side of the droplet and determines the direction of motion by creating HH there. LC environment can also be used to enable and control the transport of inanimate colloidal particles. Previously, liquid crystal-enabled electrophoresis of colloids has been explored in which the particle propels with a speed quadratically proportional to the applied electric field. In this work, we describe highly nonlinear electrophoresis in nematic in which the velocity is proportional to the fourth and sixth powers of the field. This is the highest nonlinear electrophoresis effect ever reported. The mechanism is attributed to the field-generated charges in LC which modify the space charge. Finally, the observation and recording of the dynamics of birefringence environments require complex microscopy techniques. We describe a novel microscopy based on a polychromatic polarizing module (PPM) to map the director orientation of LC with a high spatial and temporal resolution. The technique allows us to study the dynamics of active LCs.

Fluids, Colloids and Soft Materials

Fluids, Colloids and Soft Materials
Author: Alberto Fernandez-Nieves
Publisher: John Wiley & Sons
Total Pages: 444
Release: 2016-05-09
Genre: Technology & Engineering
ISBN: 111806562X

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This book presents a compilation of self-contained chapters covering a wide range of topics within the broad field of soft condensed matter. Each chapter starts with basic definitions to bring the reader up-to-date on the topic at hand, describing how to use fluid flows to generate soft materials of high value either for applications or for basic research. Coverage includes topics related to colloidal suspensions and soft materials and how they differ in behavior, along with a roadmap for researchers on how to use soft materials to study relevant physics questions related to geometrical frustration.

Flowing Matter

Flowing Matter
Author: Federico Toschi
Publisher: Springer Nature
Total Pages: 309
Release: 2019-09-25
Genre: Science
ISBN: 3030233707

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This open access book, published in the Soft and Biological Matter series, presents an introduction to selected research topics in the broad field of flowing matter, including the dynamics of fluids with a complex internal structure -from nematic fluids to soft glasses- as well as active matter and turbulent phenomena. Flowing matter is a subject at the crossroads between physics, mathematics, chemistry, engineering, biology and earth sciences, and relies on a multidisciplinary approach to describe the emergence of the macroscopic behaviours in a system from the coordinated dynamics of its microscopic constituents. Depending on the microscopic interactions, an assembly of molecules or of mesoscopic particles can flow like a simple Newtonian fluid, deform elastically like a solid or behave in a complex manner. When the internal constituents are active, as for biological entities, one generally observes complex large-scale collective motions. Phenomenology is further complicated by the invariable tendency of fluids to display chaos at the large scales or when stirred strongly enough. This volume presents several research topics that address these phenomena encompassing the traditional micro-, meso-, and macro-scales descriptions, and contributes to our understanding of the fundamentals of flowing matter. This book is the legacy of the COST Action MP1305 “Flowing Matter”.