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Related papers: Exploring quantum vacuum with low-energy photons

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We investigate the quantum dynamics of systems involving small numbers of strongly interacting photons. Specifically, we develop an efficient method to investigate such systems when they are externally driven with a coherent field.…

Quantum Physics · Physics 2013-06-20 Mohammad Hafezi , Mikhail D. Lukin , Jacob M. Taylor

We investigate the properties of quantum electrodynamics (QED) two-particle scattering processes when an arbitrarily sharp filtering of the outgoing particles in momentum space is performed. We find that these processes are described by…

Quantum Physics · Physics 2025-05-13 Massimo Blasone , Silvio De Siena , Gaetano Lambiase , Cristina Matrella , Bruno Micciola

Optically levitated particles are used in a wide range of experiments to explore both fundamental physics and to act as sensors to a variety of external forces. One field of particular interest that these particles can be used to…

Considering ultracold atoms traversing a high-Q Fabry-Perot cavity, we theoretically demonstrate a quantum nondemolition measurement of the photon number. This fully quantum mechanical approach may be understood utilizing concepts as…

Quantum Physics · Physics 2009-11-13 Jonas Larson , Mahmoud Abdel-Aty

Cavity quantum electrodynamics (cQED) harnesses light-matter interactions to produce nonclassical light states. However, a fundamental challenge lies in simultaneously achieving Purcell enhancement and tailored wavefront control within a…

The ever-growing intersection of quantum electrodynamics (QED) and molecular processes has shown remarkable and unanticipated advancements in altering molecular properties and reactivity by exploiting light-matter couplings. In recent…

Chemical Physics · Physics 2023-11-09 Xinyang Li , Yu Zhang

A promising approach to merge atomic systems with scalable photonics has emerged recently, which consists of trapping cold atoms near tapered nanofibers. Here, we describe a novel technique to achieve strong, coherent coupling between a…

Quantum Physics · Physics 2015-06-03 D. E. Chang , L. Jiang , A. V. Gorshkov , H. J. Kimble

Intense field quantum field theory (IFQFT) is used to determine new phenomenological predictions arising from Compton scattering and pair production in a strong laser field. This theory utilizes exact solutions of fermions embedded in…

High Energy Physics - Phenomenology · Physics 2016-12-30 A. Hartin

Resonance fluorescence arises from the interaction of an optical field with a two-level system and has played a fundamental role in the development of quantum optics and its applications. Despite its conceptual simplicity it entails a wide…

Lattice simulations of hadronic structure are now reaching a level where they are able to not only complement, but also provide guidance to current and forthcoming experimental programmes at, e.g. Jefferson Lab, COMPASS/CERN and FAIR/GSI.…

High Energy Physics - Lattice · Physics 2010-11-05 M. Göckeler , Ph. Hägler , R. Horsley , Y. Nakamura , D. Pleiter , P. E. L. Rakow , A. Schäfer , G. Schierholz , H. Stüben , J. M. Zanotti

The Very Large Area gamma-ray Space Telescope (VLAST) is a mission concept proposed to detect gamma-ray photons through both the Compton scattering and electron-positron pair production mechanisms, enabling the detection of photons with…

Instrumentation and Methods for Astrophysics · Physics 2024-09-02 Xu Pan , Wei Jiang , Chuan Yue , Shi-Jun Lei , Yu-Xin Cui , Qiang Yuan

A key ingredient of cavity quantum-electrodynamics (QED) is the coupling between the discrete energy levels of an atom and photons in a single-mode cavity. The addition of periodic ultra-short laser pulses allows one to use such a system as…

Quantum Physics · Physics 2013-05-29 Neill Lambert , Yueh-Nan Chen , Franco Nori

High energy collisions at the High-Luminosity Large Hadron Collider (LHC) produce a large number of particles along the beam collision axis, outside of the acceptance of existing LHC experiments. The proposed Forward Physics Facility (FPF),…

High Energy Physics - Experiment · Physics 2023-02-01 Jonathan L. Feng , Felix Kling , Mary Hall Reno , Juan Rojo , Dennis Soldin , Luis A. Anchordoqui , Jamie Boyd , Ahmed Ismail , Lucian Harland-Lang , Kevin J. Kelly , Vishvas Pandey , Sebastian Trojanowski , Yu-Dai Tsai , Jean-Marco Alameddine , Takeshi Araki , Akitaka Ariga , Tomoko Ariga , Kento Asai , Alessandro Bacchetta , Kincso Balazs , Alan J. Barr , Michele Battistin , Jianming Bian , Caterina Bertone , Weidong Bai , Pouya Bakhti , A. Baha Balantekin , Basabendu Barman , Brian Batell , Martin Bauer , Brian Bauer , Mathias Becker , Asher Berlin , Enrico Bertuzzo , Atri Bhattacharya , Marco Bonvini , Stewart T. Boogert , Alexey Boyarsky , Joseph Bramante , Vedran Brdar , Adrian Carmona , David W. Casper , Francesco Giovanni Celiberto , Francesco Cerutti , Grigorios Chachamis , Garv Chauhan , Matthew Citron , Emanuele Copello , Jean-Pierre Corso , Luc Darmé , Raffaele Tito D'Agnolo , Neda Darvishi , Arindam Das , Giovanni De Lellis , Albert De Roeck , Jordy de Vries , Hans P. Dembinski , Sergey Demidov , Patrick deNiverville , Peter B. Denton , Frank F. Deppisch , P. S. Bhupal Dev , Antonia Di Crescenzo , Keith R. Dienes , Milind V. Diwan , Herbi K. Dreiner , Yong Du , Bhaskar Dutta , Pit Duwentäster , Lucie Elie , Sebastian A. R. Ellis , Rikard Enberg , Yasaman Farzan , Max Fieg , Ana Luisa Foguel , Patrick Foldenauer , Saeid Foroughi-Abari , Jean-François Fortin , Alexander Friedland , Elina Fuchs , Michael Fucilla , Kai Gallmeister , Alfonso Garcia , Carlos A. García Canal , Maria Vittoria Garzelli , Rhorry Gauld , Sumit Ghosh , Anish Ghoshal , Stephen Gibson , Francesco Giuli , Victor P. Gonçalves , Dmitry Gorbunov , Srubabati Goswami , Silvia Grau , Julian Y. Günther , Marco Guzzi , Andrew Haas , Timo Hakulinen , Steven P. Harris , Julia Harz , Juan Carlos Helo Herrera , Christopher S. Hill , Martin Hirsch , Timothy J. Hobbs , Stefan Höche , Andrzej Hryczuk , Fei Huang , Tomohiro Inada , Angelo Infantino , Ameen Ismail , Richard Jacobsson , Sudip Jana , Yu Seon Jeong , Tomas Ježo , Yongsoo Jho , Krzysztof Jodłowski , Dmitry Kalashnikov , Timo J. Kärkkäinen , Cynthia Keppel , Jongkuk Kim , Michael Klasen , Spencer R. Klein , Pyungwon Ko , Dominik Köhler , Masahiro Komatsu , Karol Kovařík , Suchita Kulkarni , Jason Kumar , Karan Kumar , Jui-Lin Kuo , Frank Krauss , Aleksander Kusina , Maxim Laletin , Chiara Le Roux , Seung J. Lee , Hye-Sung Lee , Helena Lefebvre , Jinmian Li , Shuailong Li , Yichen Li , Wei Liu , Zhen Liu , Mickael Lonjon , Kun-Feng Lyu , Rafal Maciula , Roshan Mammen Abraham , Mohammad R. Masouminia , Josh McFayden , Oleksii Mikulenko , Mohammed M. A. Mohammed , Kirtimaan A. Mohan , Jorge G. Morfín , Ulrich Mosel , Martin Mosny , Khoirul F. Muzakka , Pavel Nadolsky , Toshiyuki Nakano , Saurabh Nangia , Angel Navascues Cornago , Laurence J. Nevay , Pierre Ninin , Emanuele R. Nocera , Takaaki Nomura , Rui Nunes , Nobuchika Okada , Fred Olness , John Osborne , Hidetoshi Otono , Maksym Ovchynnikov , Alessandro Papa , Junle Pei , Guillermo Peon , Gilad Perez , Luke Pickering , Simon Plätzer , Ryan Plestid , Tanmay Kumar Poddar , Mudit Rai , Meshkat Rajaee , Digesh Raut , Peter Reimitz , Filippo Resnati , Wolfgang Rhode , Peter Richardson , Adam Ritz , Hiroki Rokujo , Leszek Roszkowski , Tim Ruhe , Richard Ruiz , Marta Sabate-Gilarte , Alexander Sandrock , Ina Sarcevic , Subir Sarkar , Osamu Sato , Christiane Scherb , Ingo Schienbein , Holger Schulz , Pedro Schwaller , Sergio J. Sciutto , Dipan Sengupta , Lesya Shchutska , Takashi Shimomura , Federico Silvetti , Kuver Sinha , Torbjörn Sjöstrand , Jan T. Sobczyk , Huayang Song , Jorge F. Soriano , Yotam Soreq , Anna Stasto , David Stuart , Shufang Su , Wei Su , Antoni Szczurek , Zahra Tabrizi , Yosuke Takubo , Marco Taoso , Brooks Thomas , Pierre Thonet , Douglas Tuckler , Agustin Sabio Vera , Heinz Vincke , K. N. Vishnudath , Zeren Simon Wang , Martin W. Winkler , Wenjie Wu , Keping Xie , Xun-Jie Xu , Tevong You , Ji-Young Yu , Jiang-Hao Yu , Korinna Zapp , Yongchao Zhang , Yue Zhang , Guanghui Zhou , Renata Zukanovich Funchal

Indistinguishable quantum states interfere, but the mere possibility of obtaining information that could distinguish between overlapping states inhibits quantum interference. Quantum interference imaging can outperform classical imaging or…

When photons propagate in vacuum they may fluctuate into matter pairs thus allowing the vacuum to be polarised. This linear effect leads to charge screening and renormalisation. When exposed to an intense background field a nonlinear effect…

High Energy Physics - Phenomenology · Physics 2023-09-06 A. J. Macleod , J. P. Edwards , T. Heinzl , B. King , S. V. Bulanov

Direct measurement of the elastic scattering of real photons on an electromagnetic field would allow the fundamental low-energy constants of quantum electrodynamics (QED) to be experimentally determined. We show that scenarios involving the…

High Energy Physics - Phenomenology · Physics 2024-09-19 Alexander J. Macleod , Ben King

A search for new physics in top quark production with additional final-state leptons is performed using data collected by the CMS experiment in proton-proton collisions at $\sqrt{s}$ = 13 TeV at the LHC during 2016-2018. The data set…

High Energy Physics - Experiment · Physics 2024-01-04 CMS Collaboration

Interactions between light and matter play an instrumental role in many fields of science, giving rise to important applications in spectroscopy, sensing, quantum information processing, and lasers. In most of these applications, light is…

Optics · Physics 2023-03-22 Nicholas Rivera , Ido Kaminer

The quantum electrodynamical vacuum polarization effects arising in the collision of a high-energy proton beam and a strong, linearly polarized laser field are investigated. The probability that laser photons merge into one photon by…

High Energy Physics - Phenomenology · Physics 2015-05-13 A. Di Piazza , K. Z. Hatsagortsyan , C. H. Keitel
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