I could not find any convincing data to suggest the superiority of CMH. Although the price has gone down, it still does not ouperform high pressure sodium. For it to be a economic advantage, it would need to be either cheaper or efficient. So its hard to justify any reason to choose over its counterpart.
All the data i could find that asseses CMH showed no advantage over HPS. Although not entirely scientific, i do respect the data aquired by monster garden. They have the best forward thinking test parameters. They have tested dozens of lights and differing light technologies using methods that are acceptable by my standards. They did not compare HPS directly so the only reliable comparison was with metal halide. But they showed that CMH was only slightly more efficient, with a particular brand of metal halide actually outperforming it. Now its undisputed that HPS is more effective and efficient than MH. So if we take that information as correct, we can assume HPS is more efficient. Another
study from utah other than the one i provided also showed HPS as being more efficient. Not by much however. There are even a couple more tests not worth mentioning that showed much the same.
With regards to the light quality, there is actually a disadvantage for the particular type of spectrum that CMH uses. If we go by the mccree curve, which is now out of date and recent studys show to be incomplete. We can see that the higher blue and green percentage is less efficient based on the quantum efficiency provided by mccree. So the upper hand would be given to HPS due to most of its energy being distributed closer to the red part of the spectrum. However as i stated, the mccree curve is not current anymore. This is because of incomplete data. New data shows that at high radiant intensity, the quantum yield begins to be more linear accross the spectrum. Meaning light quality is of less importance compared to light quantity. This is mentioned in the
paper i provided.
However light quality does impact plants morphology, with something called photomorpogenesis. The current studys on this have clearly showed the morphological differences between the light bandwidths. However to satisfy each response only requires a small portion of the total capacity. I refer you to my other post #6.5 in this thread on that subject.
I could not find any information suggesting the improved efficiency of the technology of the last two years. Ceramic metal halide is not a new tech. Its been around for 30 years and has merely just been rediscovered for the growing industry.
I tried my best to find anything to suggest CMH as being better, but all i could find was the subjective opinions from people who have them. Which must be taken with a grain of salt, there are so many variables such as genetics, environment, reflectors, height, growing parameters etc. Its just not reliable.
You let me know if you have any information.