most citedThe Casimir force and the quantum theory of lossy optical cavities

157 citations · 300 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph20032 cited

The Casimir force between real mirrors at non zero temperature

Serge Reynaud, Astrid Lambrecht, Cyriaque Genet

The Casimir force between dissipative metallic mirrors at non zero temperature has recently given rise to contradictory claims which have raised doubts about the theoretical expres…

physics.optics20033 cited

Depolarization induced by subwavelength metal hole arrays

Cyriaque Genet, Erwin Altewischer, Martin P. van Exter +1

We present a symmetry-based theory of the depolarization induced by subwavelength metal hole arrays. We derive the Mueller matrices of hole arrays with various symmetries (in parti…

quant-ph2003114 cited

The Casimir force between rough metallic plates

Cyriaque Genet, Astrid Lambrecht, Paulo Maia Neto +1

The Casimir force between two metallic plates is affected by their roughness state. This effect is usually calculated through the so-called `proximity force approximation' which is…

quant-ph200320 cited

Electromagnetic vacuum fluctuations, Casimir and Van der Waals forces

Cyriaque Genet, Francesco Intravaia, Astrid Lambrecht +1

Electromagnetic vacuum fluctuations have observable consequences, like the Casimir force between mirrors in vacuum. This force is now measured with good accuracy and agreement with…

quant-ph20024 cited

Casimir effect and vacuum energy

Cyriaque Genet, Astrid Lambrecht, Serge Reynaud

Vacuum fluctuations have observable consequences, like the Casimir force appearing between two mirrors in vacuum. This force is now measured with good accuracy and agreement with t…

quant-ph2002157 cited

The Casimir force and the quantum theory of lossy optical cavities

Cyriaque Genet, Astrid Lambrecht, Serge Reynaud

We present a new derivation of the Casimir force between two parallel plane mirrors at zero temperature. The two mirrors and the cavity they enclose are treated as quantum optical…