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Over the past century, a large community within theoretical physics has been seeking a unified framework for quantum gravity.
On the gravitational field produced by light
Tolman, R. C., Ehrenfest, P. & Podolsky, B · 1931
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On the attraction between two perfectly conducting plates
Casimir, H. B · 1948
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Gravitation (Macmillan, 1973)
Misner, C. W., Thorne, K. S. & Wheeler, J. A · 1973
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The gravitational influence of a beam of light of variable flux
Nackoney, R. W · 1977
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General-relativistic treatment of the gravitational coupling between laser beams
Scully, M. O · 1979
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Superstring theory (cambridge
Green, M. B., Schwarz, J. H. & Witten, E · 1987
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The gravitational field of a spinning pencil of light
Mitskievic, N. V. & Kumaradtya, K. K · 1989
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On gravity’s role in quantum state reduction
Penrose, R · 1996
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Quantum nonlocality without entanglement
Bennett, C. H. et al · 1999
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Creation of large-photon-number path entanglement conditioned on photodetection
Kok, P., Lee, H. & Dowling, J. P · 2002
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Quantum gravity: from theory to experimental search , vol. 631 (Springer Science & Business Media, 2003)
Giulini, D. J., Kiefer, C. & Lämmerzahl, C · 2003
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Colliding beams of light
Ivanov, B · 2003
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Quantum gravity (Cambridge university press, 2004)
Rovelli, C · 2004
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Introductory Quantum Optics (Cambridge University Press, 2004)
Gerry, C. & Knight, P · 2004
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Generation of highly nonclassical n n -photon polarization states by superbunching at a photon bottleneck
Hofmann, H. F · 2004
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String theory (2005)
Polchinski, J · 2005
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Zur geschichte der einheitlichen feldtheorie: Einsteins jahre erfolgloser forschung
Goenner, H · 2006
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Methods for producing optical coherent state superpositions
Glancy, S. & de Vasconcelos, H. M · 2008
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Approaches to quantum gravity: Toward a new understanding of space, time and matter (Cambridge University Press, 2009)
Oriti, D · 2009
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Quantum entanglement
Horodecki, R., Horodecki, P., Horodecki, M. & Horodecki, K · 2009
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Efficient optical quantum state engineering
McCusker, K. T. & Kwiat, P. G · 2009
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Generation of optical coherent-state superpositions by number-resolved photon subtraction from the squeezed vacuum
Gerrits, T. et al · 2010
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Entanglement verification with finite data
Blume-Kohout, R., Yin, J. O. & van Enk, S · 2010
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Heisenberg-limited interferometry with pair coherent states and parity measurements
Gerry, C. C. & Mimih, J · 2010
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High-noon states by mixing quantum and classical light
Afek, I., Ambar, O. & Silberberg, Y · 2010
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Probing planck-scale physics with quantum optics
Pikovski, I., Vanner, M. R., Aspelmeyer, M., Kim, M. & Brukner, Č · 2012
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Review of entangled coherent states
Sanders, B. C · 2012
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Path integrals in quantum physics
Rosenfelder, R · 2012
Cited alongside, same era.
Near-field interferometry of a free-falling nanoparticle from a point-like source
Bateman, J., Nimmrichter, S., Hornberger, K. & Ulbricht, H · 2014
Cited alongside, same era.
Spatio-orientational decoherence of nanoparticles
Stickler, B. A., Papendell, B. & Hornberger, K · 2016
Cited alongside, same era.
The effect of entanglement in gravitational photon-photon scattering
Rätzel, D., Wilkens, M. & Menzel, R · 2016
Cited alongside, same era.
Gravitational properties of light—the gravitational field of a laser pulse
Rätzel, D., Wilkens, M. & Menzel, R · 2016
Cited alongside, same era.
Dense gev electron–positron pairs generated by lasers in near-critical-density plasmas
Using an atom interferometer to infer gravitational entanglement generation
Carney, D., Müller, H. & Taylor, J. M · 2021
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Do gedanken experiments compel quantization of gravity?
Rydving, E., Aurell, E. & Pikovski, I · 2021
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Quantum control of a nanoparticle optically levitated in cryogenic free space
Tebbenjohanns, F., Mattana, M. L., Rossi, M., Frimmer, M. & Novotny, L · 2021
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Torque-free manipulation of nanoparticle rotations via embedded spins
Ma, Y., Kim, M. & Stickler, B. A · 2021
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Observing light-by-light scattering in vacuum with an asymmetric photon collider
Sangal, M., Keitel, C. H. & Tamburini, M · 2021
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Generating arbitrary laser beam shapes through phase-mapped designed beam splitting
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Zhu, X.-L. et al · 2016
Cited alongside, same era.
Spin entanglement witness for quantum gravity
Bose, S. et al · 2017
Cited alongside, same era.
Gravitationally induced entanglement between two massive particles is sufficient evidence of quantum effects in gravity
Marletto, C. & Vedral, V · 2017
Cited alongside, same era.
On two recent proposals for witnessing nonclassical gravity
Hall, M. J. & Reginatto, M · 2018
Cited alongside, same era.
Entanglement of quantum fields via classical gravity
Reginatto, M. & Hall, M. J · 2018
Cited alongside, same era.
Pure nanodiamonds for levitated optomechanics in vacuum
Frangeskou, A. C. et al · 2018
Cited alongside, same era.
The gravitational field of a laser beam beyond the short wavelength approximation
Schneiter, F., Rätzel, D. & Braun, D · 2018
Cited alongside, same era.
Silva, P. F. & Muniz, S. R · 2021
Later among the works it cites.
Heisenberg-limited quantum interferometry with multiphoton-subtracted twin beams
Eaton, M., Nehra, R., Win, A. & Pfister, O · 2021
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Qudits for witnessing quantum-gravity-induced entanglement of masses under decoherence
Tilly, J., Marshman, R. J., Mazumdar, A. & Bose, S · 2021
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Quantum gravity in a laboratory?, DOI: 10.48550/ARXIV.2205.09013 (2022)
Huggett, N., Linnemann, N. & Schneider, M · 2022
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Is gravitational entanglement evidence for the quantization of spacetime?
Döner, M. K. & Großardt, A · 2022
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On inference of quantization from gravitationally induced entanglement
Fragkos, V., Kopp, M. & Pikovski, I · 2022
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What gravity mediated entanglement can really tell us about quantum gravity
Martín-Martínez, E. & Perche, T. R · 2022
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Limits on inference of gravitational entanglement
Ma, Y., Guff, T., Morley, G. W., Pikovski, I. & Kim, M · 2022
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Constraints on probing quantum coherence to infer gravitational entanglement
Hosten, O · 2022
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Mechanism for the quantum natured gravitons to entangle masses
Bose, S., Mazumdar, A., Schut, M. & Toroš, M · 2022
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Spin dynamical decoupling for generating macroscopic superpositions of a free-falling nanodiamond
Wood, B., Bose, S. & Morley, G · 2022
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Gravity entanglement, quantum reference systems, degrees of freedom
Christodoulou, M., Di Biagio, A., Howl, R. & Rovelli, C · 2022
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High average power ultrafast laser technologies for driving future advanced accelerators
Kiani, L. et al · 2022
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Perspectives of measuring gravitational effects of laser light and particle beams
Spengler, F., Rätzel, D. & Braun, D · 2022
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Gravitational optomechanics: Photon-matter entanglement via graviton exchange
Biswas, D., Bose, S., Mazumdar, A. & Toroš, M · 2022
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Signatures of quantum gravity in the gravitational self-interaction of photons, DOI: 10.48550/arXiv.2210.02803 (2022)
Mehdi, Z., Hope, J. J. & Haine, S. A · 2022
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Locally mediated entanglement through gravity from first principles
Christodoulou, M. et al · 2022
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Polarization-path-frequency entanglement using interferometry and frequency shifters
Majumdar, M. G. & Chandrashekar, C. M · 2022
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Squeezed states of light for future gravitational wave detectors at a wavelength of 1550 nm
Meylahn, F., Willke, B. & Vahlbruch, H · 2022
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Measuring the joint spectral mode of photon pairs using intensity interferometry
Thekkadath, G., Bell, B., Patel, R., Kim, M. & Walmsley, I · 2022
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Improving resilience of quantum-gravity-induced entanglement of masses to decoherence using three superpositions
Schut, M., Tilly, J., Marshman, R. J., Bose, S. & Mazumdar, A · 2022
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