PhD student in Switzerland 🇨🇭
Trapped-ion quantum computing
The paper:
The paper:
m1=67.1 m2=7.3 m3=1.3 (solar masses)
v1x=6.76 v1y=2.49 v2x=3.466 v2y=2.517 v3x=-3.679 v3y=-2.227 (km/s)
x1=35.0 y1=-9.0 x2=-10.0 y2=35.0 x3=7.0 y3=0.0 (AU from center)
Music: Nocturne in C-Sharp Minor (Posthumous) – Chopin
m1=67.1 m2=7.3 m3=1.3 (solar masses)
v1x=6.76 v1y=2.49 v2x=3.466 v2y=2.517 v3x=-3.679 v3y=-2.227 (km/s)
x1=35.0 y1=-9.0 x2=-10.0 y2=35.0 x3=7.0 y3=0.0 (AU from center)
Music: Nocturne in C-Sharp Minor (Posthumous) – Chopin
m1=18.7 m2=54.1 m3=1.9 (solar masses)
v1x=-2.733 v1y=-4.333 v2x=6.713 v2y=-6.743 v3x=-6.019 v3y=3.714 (km/s)
x1=-19.0 y1=17.0 x2=-9.0 y2=-29.0 x3=24.0 y3=1.0 (AU from center)
Music: Lost (The Expanse) – Shorter
m1=18.7 m2=54.1 m3=1.9 (solar masses)
v1x=-2.733 v1y=-4.333 v2x=6.713 v2y=-6.743 v3x=-6.019 v3y=3.714 (km/s)
x1=-19.0 y1=17.0 x2=-9.0 y2=-29.0 x3=24.0 y3=1.0 (AU from center)
Music: Lost (The Expanse) – Shorter