ArticleWe consider the wave equation for sound in a moving fluid with a fourth-order anomalous dispersion relation. The velocity of the fluid is a linear function of position, giving two points in the flow where the fluid velocity matches the group velocity of low-frequency waves. We find the exact solution for wave propagation in the flow. The scattering shows amplification of classical waves, leading to spontaneous emission when the waves are quantized. In the dispersionless limit the system corresponds to a 1+1-dimensional black-hole or white-hole binary and there is a thermal spectrum of Hawking radiation from each horizon. Dispersion changes the scattering coefficients so that the quantum emission is no longer thermal. The scattering c...
International audienceIn this paper we extend the hydrodynamic results of {A. Fabbri and C. Mayoral,...
Copyright © 2008 IOP PublishingOpen Access journalThe conversion of positive-frequency waves into ne...
Unruh [1] demonstrated that black holes have an analogy in acoustics. Under this analogy the acousti...
Contribution to "Quantum Analogues: From Phase Transitions to Black Holes and Cosmology" edited by W...
Hawking radiation, despite its presence in theoretical physics for over thirty years, remains elusiv...
none4Using the action principle we first review how linear density perturbations (sound waves) in an...
We derive analytic expressions for the low-frequency properties of the analogue Hawking radiation in...
We analytically study the low-frequency properties of the analogue Hawking effect in Bose-Einstein c...
Hawking radiation, despite its presence in theoretical physics for over thirty years, remains elusiv...
International audienceQuantum effects of fields on curved spacetimes may be studied in the laborator...
Using the action principle we first review how linear density perturbations (sound waves) in an Eule...
Acoustic black holes are formed when a fluid flowing with subsonic velocities, accelerates and becom...
Quantum effects of fields on curved spacetimes may be studied in the laboratory thanks to quantum fl...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
We study the propagation of low-frequency shallow water waves on a one-dimensional flow of varying d...
International audienceIn this paper we extend the hydrodynamic results of {A. Fabbri and C. Mayoral,...
Copyright © 2008 IOP PublishingOpen Access journalThe conversion of positive-frequency waves into ne...
Unruh [1] demonstrated that black holes have an analogy in acoustics. Under this analogy the acousti...
Contribution to "Quantum Analogues: From Phase Transitions to Black Holes and Cosmology" edited by W...
Hawking radiation, despite its presence in theoretical physics for over thirty years, remains elusiv...
none4Using the action principle we first review how linear density perturbations (sound waves) in an...
We derive analytic expressions for the low-frequency properties of the analogue Hawking radiation in...
We analytically study the low-frequency properties of the analogue Hawking effect in Bose-Einstein c...
Hawking radiation, despite its presence in theoretical physics for over thirty years, remains elusiv...
International audienceQuantum effects of fields on curved spacetimes may be studied in the laborator...
Using the action principle we first review how linear density perturbations (sound waves) in an Eule...
Acoustic black holes are formed when a fluid flowing with subsonic velocities, accelerates and becom...
Quantum effects of fields on curved spacetimes may be studied in the laboratory thanks to quantum fl...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
We study the propagation of low-frequency shallow water waves on a one-dimensional flow of varying d...
International audienceIn this paper we extend the hydrodynamic results of {A. Fabbri and C. Mayoral,...
Copyright © 2008 IOP PublishingOpen Access journalThe conversion of positive-frequency waves into ne...
Unruh [1] demonstrated that black holes have an analogy in acoustics. Under this analogy the acousti...