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16+ results
Field: Atomic and Molecular Physics, and Optics

Optical manipulation from the microscale to the nanoscale: fundamentals, advances and prospects

Verified

Dongliang Gao, Weiqiang Ding, M. Nieto‐Vesperinas, Xumin Ding et al.

Journal: Light Science & Applications
Year: 2017
Citations: 621

Since the invention of optical tweezers, optical manipulation has advanced significantly in scientific areas such as atomic physics, optics and biological science. Especially in the past decade, numerous optical beams and nanoscale devices have been proposed to mechanically act on nanoparticles in i...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and OpticsOpen Access
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Solitons, shocks and vortices in dusty plasmas

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P. K. Shukla, A. A. Mamun

Journal: New Journal of PhysicsYear: 2003Citations: 287

Three important classes of nonlinear phenomena, namely solitons, shocks and vortices in dusty plasmas, have been discussed. The static and mobile charged dust grains have been considered in order to study all of these nonlinear phenomena. The effects of nonplanar geometry, dust grain charge fluctuat...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and OpticsOpen Access
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An ab-initio study on structural, elastic, electronic, bonding, thermal, and optical properties of topological Weyl semimetal TaX (X = P, As)

Verified

M. I. Naher, S. H. Naqib

Journal: Scientific ReportsYear: 2021Citations: 252

In recent days, study of topological Weyl semimetals have become an active branch of physics and materials science because they led to realization of the Weyl fermions and exhibited protected Fermi arc surface states. Therefore, topological Weyl semimetals TaX (X = P, As) are important electronic sy...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and OpticsOpen Access
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Mechanochromism of Structural‐Colored Materials

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Guojian Chen, Wei Hong

Journal: Advanced Optical MaterialsYear: 2020Citations: 201

Abstract Structural colors widespread in nature have been theoretically in‐depth studied and manufactured through the artificial approaches such as self‐assembly and nanolithography thanks to the rapidly developing nanotechnology. Structural colors based on elastomers and hydrogels can be readily mo...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and Optics
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Structural, elastic, electronic, bonding, and optical properties of topological CaSn3 semimetal

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M. I. Naher, S. H. Naqib

Journal: Journal of Alloys and CompoundsYear: 2020Citations: 175

The topological Weyl semimetal CaSn3, belonging to the AuCu3 type cubic structure, is an important electronic system to investigate both from the point of view of fundamental physics and prospective applications. In this work, we have studied the structural, elastic, mechanical, electronic, bonding,...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and Optics
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Effects of ion temperature on electrostatic solitary structures in nonthermal plasmas

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A. A. Mamun

Journal: Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topicsYear: 1997Citations: 167

Effects of ion temperature on compressive and rarefactive ion-acoustic solitary waves, which have been found to coexist in non-thermal plasmas, are investigated by the pseudopotential approach, which is valid for arbitrary amplitude solitary waves. It is shown that the effects of ion temperature cha...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and Optics
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Solitary potentials in cometary dusty plasmas

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A. A. Mamun, P. K. Shukla

Journal: Geophysical Research LettersYear: 2002Citations: 163

Recent observations reveal that plasmas in cometary tails contain charged dust grains of positive and negative polarities. Our objective here is to show that such a two‐component dusty plasma supports dust‐Langmuir and dust‐acoustic waves. The latter in the nonlinear regime propagate in the form of ...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and OpticsOpen Access
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Coherent synchrotron emission from electron nanobunches formed in relativistic laser–plasma interactions

Verified

B. Dromey, S. G. Rykovanov, M. Yeung, R. Hörlein et al.

Journal: Nature PhysicsYear: 2012Citations: 162
Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and OpticsOpen Access
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The role of dust charge fluctuations on nonlinear dust ion-acoustic waves

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A. A. Mamun, P. K. Shukla

Journal: IEEE Transactions on Plasma ScienceYear: 2002Citations: 155

The nonlinear propagation of the dust ion-acoustic waves has been investigated accounting for the charge fluctuation dynamics of stationary dust grains in an unmagnetized dusty plasma. The Korteweg-de Vries equation, as well as the Korteweg-de Vries-Burgers equation, are derived by employing the red...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and Optics
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Transmission line analogy of resonance tunneling phenomena: The generalized impedance concept

Verified

A. N. Khondker, M. Rezwan Khan, A.F.M. Anwar

Journal: Journal of Applied PhysicsYear: 1988Citations: 153

This paper presents a simple yet accurate method for solving the Schrödinger equation to calculate the quantum mechanical transmission probability across arbitrary potential barriers. It is based on the concept of wave impedance analogous to transmission line theory. The quantum mechanical transmiss...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and Optics
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Multiresponsive Elastic Colloidal Crystals for Reversible Structural Color Patterns

Verified

Junlong Liao, Cun Zhu, Bingbing Gao, Ze Zhao et al.

Journal: Advanced Functional MaterialsYear: 2019Citations: 152

Abstract Multiresponsive elastic poly(methyl methacrylate‐butyl acrylate) (P(MMA‐BA)) copolymer nanoparticles with controlled sizes are fabricated through a one‐step method, which further serve as building blocks for the construction of multiresponsive films via self‐assembly. Taking advantage of th...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and Optics
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All-Optical Chirality-Sensitive Sorting<i>via</i>Reversible Lateral Forces in Interference Fields

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Tianhang Zhang, M. R. C. Mahdy, Yongmin Liu, Jinghua Teng et al.

Journal: ACS NanoYear: 2017Citations: 146

Separating substances by their chirality faces great challenges as well as opportunities in chemistry and biology. In this study, we propose an all-optical solution for passive sorting of chiral objects using chirality-dependent lateral optical forces induced by judiciously interfered fields. First,...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and Optics
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Observation of edge solitons in photonic graphene

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Zhaoyang Zhang, Rong Wang, Yiqi Zhang, Yaroslav V. Kartashov et al.

Journal: Nature CommunicationsYear: 2020Citations: 134

Edge states emerge in diverse areas of science, offering promising opportunities for the development of future electronic or optoelectronic devices, sound and light propagation control in acoustics and photonics. Previous experiments on edge states in photonics were carried out mostly in linear regi...

Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and OpticsOpen Access
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Energies, Oscillator Strengths, and Lifetimes for Neon-like Ions Up to Kr XXVII

Verified

A Hibbert, M. Ledourneuf, Man Mohan

Journal: Atomic Data and Nuclear Data TablesYear: 1993Citations: 129
Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and Optics
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New optical solitons of cubic-quartic nonlinear Schrödinger equation

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K. Hosseini, F. Samadani, Dipankar Kumar, M. Faridi

Journal: OptikYear: 2017Citations: 127
Physical SciencesPhysics and AstronomyAtomic and Molecular Physics, and Optics
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