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Antiprotonic helium and CPT invariance

机译:反质子氦和CPT不变性

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We review recent progress in the laser and microwave spectroscopy of antiprotonic helium atoms ((p) over bar He+ e(-) - (p) over bar - He++) carried out at CERN's Antiproton Decelerator facility (AD). Laser transitions were here induced between Rydberg states (n, l) and (n +/- 1, l - 1) of (p) over bar He+ (n similar to 40 and l less than or similar to n - 1 being the principal and orbital angular momentum quantum numbers of the antiproton orbit). Successive refinements in the experimental techniques improved the fractional precision on the (p) over bar He+ frequencies from 3 parts in 10(6) to similar to 1 part in 10(8). These included a radiofrequency quadrupole decelerator, which reduced the energy of the antiprotons from 5.3 MeV (the energy of the beam emerging from AD) to similar to 100 keV. This enabled the production of (p) over bar He+ in ultra-low density targets, where collisional effects with other helium atoms are negligible. A continuous wave pulse-amplified dye laser, stabilized against a femtosecond optical frequency comb, was then used to measure the (p) over bar He+ frequencies with ppb-scale precision. This progress in the experimental field was matched by similar advances in computing methods for evaluating the expected transition frequencies in three-body QED calculations. The comparison of experimental (nu(exp)) and theoretical (nu(th)) frequencies for seven transitions in (p) over bar He-4(+) and five in (p) over bar (3) He+ yielded an antiproton-to-electron mass ratio of m((p) over bar)/m(e) = 1836.152 674(5). This agrees with the known proton-to-electron mass ratio at the level of similar to 2x 10(-9). The experiment also set a limit on any CPT-violating difference between the antiproton and proton charges and masses, (Qp - vertical bar Q((p) over bar)vertical bar)/Qp similar to (m(p)-m((p) over bar))/mp < 2 x 10(-9) to a 90% confidence level. If on the other hand we assume the validity of the CPT invariance, the m((p) over bar)/m(e) result can be taken to be equal to m(p)/m(e). This can be used as an input to future adjustments of fundamental constants. The hyperfine structure of a state in (p) over bar He-4(+) has also been measured by microwave spectroscopy to a precision of 3 x 10(-5). This corresponds to the accuracy of the most precise three-body QED calculations. Further increases in the experimental precision may soon yield an improvement in the value of the antiproton magnetic moment.
机译:我们回顾了在CERN的反质子减速器设施(AD)上进行的反质子氦原子(在He + e上的(p)-在He-e上的p-)上的激光和微波光谱学的最新进展。在此,在He +棒上的(p)的Rydberg态(n,l)和(n +/- 1,l-1)之间诱导了激光跃迁(n等于40,l小于或类似于n-1是主要的)和反质子轨道的轨道角动量量子数)。实验技术的不断完善提高了(p)在He + bar频率上的分数精度,从10(6)中的3到10(8)中的1。其中包括一个射频四极减速器,该减速器将反质子的能量从5.3 MeV(从AD射出的电子束能量)降低到100 keV。这样就可以在超低密度靶中产生超过He + bar的(p),而与其他氦原子的碰撞效应可忽略不计。然后,用飞秒光学频率梳稳定的连续波脉冲放大染料激光,以ppb级精度在He +棒上测量(p)。实验领域的这一进展与评估三体QED计算中的预期过渡频率的计算方法的类似进步相匹配。比较He-4(+)上(p)的(p)中的七个跃迁和bar(3)He +上的(p)五个中的跃迁的实验(nu(exp))和理论(nu(th))频率产生了反质子-的电子与电子的质量比m((p)超过bar)/ m(e)= 1836.152 674(5)。这与已知的质子与电子的质量比在2x 10(-9)的水平上一致。该实验还对反质子与质子电荷和质量之间的任何违反CPT的差异设置了限制(Qp-垂直线Q((p)超过条线)垂直线)/ Qp类似于(m(p)-m(( p)超过bar))/ mp <2 x 10(-9)达到90%的置信度。另一方面,如果我们假设CPT不变性的有效性,则m((p)over bar)/ m(e)的结果可以认为等于m(p)/ m(e)。这可以用作将来对基本常数进行调整的输入。 He-4(+)上方(p)中状态的超精细结构也已通过微波光谱法测量,精度为3 x 10(-5)。这对应于最精确的三体QED计算的准确性。实验精度的进一步提高可能很快会带来反质子磁矩值的改善。

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