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Over the past few decades, efforts have been made towards robust robotic grasping, and therefore dexterous manipulation. The soft gripper has shown their potential in robust grasping due to their inherent properties-low, control complexity,…

Robotics · Computer Science 2020-12-08 Linhan Yang , Xudong Han , Weijie Guo , Zixin Zhang , Fang Wan , Jia Pan , Chaoyang Song

Difference-sideband generation in an optomechanical system coupled to a charged object is investigated beyond the conventional linearized description of optomechanical interactions. An exponential decay law for difference-sideband…

Instrumentation and Detectors · Physics 2017-10-11 Hao Xiong , Zeng-Xing Liu , Ying Wu

Cavity optomechanical systems have become a popular playground for studies of controllable nonlinear interactions between light and motion. Owing to the large speed of light, realizing cavity optomechanics in the microwave frequency range…

Mesoscale and Nanoscale Physics · Physics 2024-03-05 Kalle S. U. Kansanen , Camillo Tassi , Harshad Mishra , Mika A. Sillanpää , Tero T. Heikkilä

Nowadays, ultrasound sensors are playing an irreplaceable role in the fields of biomedical imaging and industrial nondestructive inspection. Currently, piezoelectric transducers are the most widely used ultrasound sensors, but their…

Optics · Physics 2023-03-23 Xuening Cao , Hao Yang , Bei-Bei Li

To address the challenges associated with shape sensing of continuum manipulators (CMs) using Fiber Bragg Grating (FBG) optical fibers, we feature a unique shape sensing assembly utilizing solely a single Optical Frequency Domain…

Robotics · Computer Science 2024-05-29 Mobina Tavangarifard , Wendy Rodriguez Ovalle , Farshid Alambeigi

Cavity-optomechanics enables photon-phonon interaction and correlations by harnessing the radiation-pressure force. Here, we realize a ``cavity-in-a-membrane'' optomechanical architecture which allows detection of the motion of…

Optics · Physics 2022-09-19 Mengdi Zhao , Kejie Fang

We propose a new class of compact integrated optical circulators providing a large isolation level while maintaining a straightforward technological feasibility. Their layout is based on a nonreciprocal radial Bragg cavity composed of…

Tactile sensing is crucial in robotics and wearable devices for safe perception and interaction with the environment. Optical tactile sensors have emerged as promising solutions, as they are immune to electromagnetic interference and have…

The coupling of Rydberg vapour medium to both microwave and optical fields allows harnessing the merits of all-optical detection, e.g. weak disruption of the measured field and invulnerability to extremely strong fields, owing to the lack…

Atomic Physics · Physics 2025-10-20 Sebastian Borówka , Mateusz Mazelanik , Wojciech Wasilewski , Michał Parniak

$\mathcal{PT}$-symmetry-breaking enhanced cavity optomechanical magnetometer is proposed, which is achieved by monitoring the change of intensity of a nonlinear four-wave mixing (FWM) process in a gain-cavity-assisted cavity optomechanical…

Quantum Physics · Physics 2020-08-12 Zhucheng Zhang , Yi-Ping Wang , Xiaoguang Wang

In-vivo tissue stiffness identification can be useful in pulmonary fibrosis diagnostics and minimally invasive tumor identification, among many other applications. In this work, we propose a palpation-based method for tissue stiffness…

Optical nanosensors are promising for hydrogen sensing because they are small, free from spark generation, and feasible for remote optical readout. Conventional optical nanosensors require broadband excitation and spectrometers, rendering…

We present a novel application of Fiber Bragg Grating (FBG) sensors in the construction and characterisation of Micro Pattern Gaseous Detector (MPGD), with particular attention to the realisation of the largest triple (Gas electron…

Instrumentation and Detectors · Physics 2015-12-31 D. Abbaneo , M. Abbas , M. Abbrescia , A. A. Abdelalim , M. Abi Akl , O. Aboamer , D. Acosta , A. Ahmad , W. Ahmed , W. Ahmed , A. Aleksandrov , R. Aly , P. Altieri , C. Asawatangtrakuldee , P. Aspell , Y. Assran , I. Awan , S. Bally , Y. Ban , S. Banerjee , V. Barashko , P. Barria , G. Bencze , N. Beni , L. Benussi , V. Bhopatkar , S. Bianco , J. Bos , O. Bouhali , A. Braghieri , S. Braibant , S. Buontempo , C. Calabria , M. Caponero , C. Caputo , F. Cassese , A. Castaneda , S. Cauwenbergh , F. R. Cavallo , A. Celik , M. Choi , S. Choi , J. Christiansen , A. Cimmino , S. Colafranceschi , A. Colaleo , A. Conde Garcia , S. Czellar , M. M. Dabrowski , G. De Lentdecker , R. De Oliveira , G. de Robertis , S. Dildick , B. Dorney , W. Elmetenawee , G. Endroczi , F. Errico , A. Fenyvesi , S. Ferry , I. Furic , P. Giacomelli , V. Golovtsov , L. Guiducci , F. Guilloux , A. Gutierrez , R. M. Hadjiiska , A. Hassan , J. Hauser , K. Hoepfner , M. Hohlmann , H. Hoorani , P. Iaydjiev , Y. G. Jeng , T. Kamon , P. Karchin , A. Korytov , S. Krutelyov , A. Kumar , H. Kim , J. Lee , T. Lenzi , L. Litov , F. Loddo , A. Madorsky , T. Maerschalk , M. Maggi , A. Magnani , P. K. Mal , K. Mandal , A. Marchioro , A. Marinov , R. Masod , N. Majumdar , J. A. Merlin , G. Mitselmakher , A. K. Mohanty , S. Muhammad , A. Mohapatra , J. Molnar , S. Mukhopadhyay , M. Naimuddin , S. Nuzzo , E. Oliveri , L. M. Pant , P. Paolucci , I. Park , G. Passeggio , L. Passamonti , B. Pavlov , B. Philipps , D. Piccolo , D. Pierluigi , H. Postema , A. Puig Baranac , A. Radi , R. Radogna , G. Raffone , A. Ranieri , G. Rashevski , C. Riccardi , M. Rodozov , A. Rodrigues , L. Ropelewski , S. RoyChowdhury , A. Russo , G. Ryu , M. S. Ryu , A. Safonov , S. Salva , G. Saviano , A. Sharma , A. Sharma , R. Sharma , A. H. Shah , M. Shopova , J. Sturdy , G. Sultanov , S. K. Swain , Z. Szillasi , A. Tatarinov , T. Tuuva , M. Tytgat , I. Vai , M. Van Stenis , R. Venditti , E. Verhagen , P. Verwilligen , P. Vitulo , S. Volkov , A. Vorobyev , D. Wang , M. Wang , U. Yang , Y. Yang , R. Yonamine , N. Zaganidis , F. Zenoni , A. Zhang

Advances in integrated photonics open exciting opportunities for batch-fabricated optical sensors using high quality factor nanophotonic cavities to achieve ultra-high sensitivities and bandwidths. The sensitivity improves with higher…

Optics · Physics 2021-07-09 Mingkang Wang , Diego J. Perez-Morelo , Vladimir Aksyuk

We propose an experiment using optically trapped and cooled dielectric microspheres for the detection of short-range forces. The center-of-mass motion of a microsphere trapped in vacuum can experience extremely low dissipation and quality…

High Energy Physics - Phenomenology · Physics 2015-05-19 Andrew A. Geraci , Scott B. Papp , John Kitching

Currently, optical- or mechanical-resonances are commonly used in microfluidic research. However, optomechanical oscillations by light pressure were not shown with liquids. This is because replacing the surrounding air with water inherently…

Experimental exploration of synchronization in scalable oscillator micro systems has unfolded a deeper understanding of networks, collective phenomena, and signal processing. Cavity optomechanical devices have played an important role in…

The first demonstration of narrowband spectral filtering of multimode light on a 3D integrated photonic chip using photonic lanterns and waveguide Bragg gratings is reported. The photonic lanterns with multi-notch waveguide Bragg gratings…

Instrumentation and Methods for Astrophysics · Physics 2016-07-12 Izabela Spaleniak , Simon Gross , Nemanja Jovanovic , Robert J. Williams , Jon S. Lawrence , Michael J. Ireland , Michael J. Withford

Sapphire fiber can withstand around 2000{\deg}C, but it is multimoded, giving poor precision sensors. We demonstrate a single-mode sapphire fiber Bragg grating temperature sensor operating up to 1200{\deg}C. The repeatability above…

We study the propagation of a weak probe field through an optomechanical system in which $N$ nearly degenerate mechanical membranes are inside a Febry-Perot cavity, and couple dispersively to an intracavity field. We derive a general…

Quantum Physics · Physics 2014-03-07 Sumei Huang , Mankei Tsang