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The first Bluegill test failed, and the successful Bluegill Triple Prim test detonated at a point closer to Johnston Island.

According to the standard reference book on nuclear weapon effects by the United States Department of Defense , "For the high-altitude tests conducted in and in the vicinity of Johnston Island, the charged particles entered the atmosphere in the northern hemisphere between Johnston Island and the main Hawaiian Islands, whereas the conjugate region was in the vicinity of the Samoan , Fiji, and Tonga Islands.

It is in these areas that auroras were actually observed, in addition to those in the areas of the nuclear explosions. Beta particles are charged particles usually with a negative electrical charge that are released from nuclear explosions.

These particles travel in a spiral along the magnetic field lines in the Earth's magnetic field. The nuclear explosions also release heavier debris ions, which also carry an electrical charge, and which also travel in a spiral along the Earth's magnetic field lines.

The Earth's magnetic field lines arc high above the Earth until they reach the magnetic conjugate area in the opposite hemisphere.

According to the DOD nuclear weapon effects reference, "Because the beta particles have high velocities, the beta auroras in the remote southern hemisphere appeared within a fraction of a second of those in the hemisphere where the burst had occurred.

The debris ions, however, travel more slowly and so the debris aurora in the remote hemisphere, if it is formed, appears at a somewhat later time.

The beta auroras are generally most intense at an altitude of 30 to 60 miles, whereas the intensity of the debris auroras is greatest in the 60 to miles range.

Remote conjugate beta auroras can occur if the detonation is above 25 miles, whereas debris auroras appear only if the detonation altitude is in excess of some miles.

Some of the charged particles traveling along the Earth's magnetic field lines cause auroras and other geophysical phenomena in the conjugate areas.

Other charged particles are reflected back along the magnetic field lines, where they can persist for long periods of time up to several months or longer , forming artificial radiation belts.

According to the Operation Fishbowl planning document of November , "Since much valuable data can be obtained from time and spectrum resolved photography, this dictates that the test be performed at nighttime when auroral photographic conditions are best.

Pacific high-altitude nuclear tests, all of the Operation Fishbowl tests were completed at night. This is in contrast to the Soviet high-altitude tests of the K Project , which were done over the populated land region of central Kazakhstan, and therefore had to be done during the daytime to avoid eyeburn damage to the population from the very bright flash of high-altitude nuclear explosions as discussed in the introduction to this article.

The PGM Thor missile shown here is very similar to the Thor missile used for the launch of the nuclear warhead in all attempts of the Bluegill, Starfish and Kingfish nuclear tests of Operation Fishbowl.

According to the initial plan of Operation Fishbowl , the nuclear tests were to be Bluegill , Starfish and Urraca , in that order. If a test were to fail, the next attempt of the same test would be of the same name plus the word "prime.

The first planned test of Operation Fishbowl was on 2 June when a nuclear warhead was launched from Johnston Island on a Thor missile just after midnight.

Although the Thor missile appeared to be on a normal trajectory, the radar tracking system lost track of the missile.

Because of the large number of ships and aircraft in the area, there was no way to predict if the missile was on a safe trajectory, so the range safety officers ordered the missile with its warhead to be destroyed.

No nuclear detonation occurred and no data was obtained. The second planned test of Operation Fishbowl was on 19 June The launch of a Thor missile with a nuclear warhead occurred just before midnight from Johnston Island.

The Thor missile flew a normal trajectory for 59 seconds; then the rocket engine suddenly stopped, and the missile began to break apart.

The range safety officer ordered the destruction of the missile and the warhead. The missile was between 30, and 35, feet between 9. Some of the missile parts fell on Johnston Island, and a large amount of missile debris fell into the ocean in the vicinity of the island.

Navy Explosive Ordnance Disposal and Underwater Demolition Team swimmers recovered approximately pieces of the missile assembly during the next two weeks.

Some of the debris was contaminated with plutonium. Nonessential personnel had been evacuated from Johnston Island during the test.

On 9 July , at Coordinated Universal Time, which was nine seconds after 10 p. The nuclear warhead detonated at 13 minutes and 41 seconds after liftoff of the Thor missile.

Starfish Prime caused an electromagnetic pulse EMP which was far larger than expected, so much larger that it drove much of the instrumentation off scale, causing great difficulty in getting accurate measurements.

A total of 27 small rockets were launched from Johnston Island to obtain experimental data from the shot, with the first of the support rockets being launched 2 hours and 45 minutes before the launch of the Thor missile carrying the nuclear warhead.

Most of these smaller instrumentation rockets were launched just after the time of the launch of the main Thor missile carrying the warhead.

In addition, a large number of rocket-borne instruments were launched from a firing area at Barking Sands , Kauai in the Hawaiian Islands.

A very large number of United States military ships and aircraft were operating in support of Starfish Prime in the Johnston Island area and across the nearby North Pacific region.

A few military ships and aircraft were also positioned in the southern conjugate region for the test, which was near the Samoan Islands.

In addition, an uninvited scientific expeditionary ship from the Soviet Union was stationed near Johnston Island for the test and another Soviet scientific expeditionary ship was located in the southern conjugate region.

After the Starfish Prime detonation, bright auroras were observed in the detonation area as well as in the southern conjugate region on the other side of the equator from the detonation.

According to one of the first technical reports, "The visible phenomena due to the burst were widespread and quite intense; a very large area of the Pacific was illuminated by the auroral phenomena, from far south of the south magnetic conjugate area Tongatapu through the burst area to far north of the north conjugate area French Frigate Shoals.

At twilight after the burst, resonant scattering of light from lithium and other debris was observed at Johnston and French Frigate Shoals for many days confirming the longtime presence of debris in the atmosphere.

An interesting side effect was that the Royal New Zealand Air Force was aided in anti-submarine maneuvers by the light from the bomb.

All of these satellites failed completely within several months of the Starfish detonation. The report, entitled "Collateral Damage to Satellites from an EMP Attack," discusses in great detail the satellite damage caused by the Starfish Prime artificial radiation belts as well as other historical nuclear events that caused artificial radiation belts and their effects on many satellites that were then in orbit.

The same report also projects the effects of one or more present-day high altitude nuclear explosions upon the formation of artificial radiation belts and the probable resulting effects on satellites that were in orbit as of the year Inspection of Thor engine parts after the radiation contamination following the Bluegill Prime fire on Johnston Island.

Although there was no danger of an accidental nuclear explosion, the destruction of the nuclear warhead on the launch pad caused extensive contamination of the area by alpha-emitting radioactive materials.

Burning rocket fuel, flowing through the cable trenches, caused extensive chemical contamination of the trenches and the equipment associated with the cabling in the trenches.

The radiation contamination on Johnston Island was determined to be a major problem, and it was necessary to decontaminate the entire area before the badly damaged launch pad could be rebuilt.

Operation Fishbowl test operations stopped after the disastrous failure of Bluegill Prime , and most of the personnel not directly involved in the radioactive cleanup and launch pad rebuild on Johnston Island returned to their home stations to await the resumption of tests.

The Urraca event was canceled to avoid further damage to satellites and three new shots were added. After a pause of nearly three months, Operation Fishbowl was ready to continue, beginning with another attempt at the Bluegill test.

Eighty two days after the failure of Bluegill Prime , about 30 minutes before midnight on the night of 15 October , local Johnston Island time 16 October UTC , another attempt was made at the Bluegill test.

The Thor missile malfunctioned and began tumbling out of control about 85 seconds after launch, and the range safety officer ordered the destruction of the missile and its nuclear warhead about 95 seconds after launch.

It was reported that the yield and burst altitude were very close to those desired, but according to most official documents the exact nuclear yield remains classified.

It is reported in the open literature as simply being less than 20 kilotons. One report by the U. It was reported that, "Observers on Johnston Island saw a green and blue circular region surrounded by a blood-red ring formed overhead that faded in less than 1 minute.

Blue-green streamers and numerous pink striations formed, the latter lasting for 30 minutes. Observers at Samoa saw a white flash, which faded to orange and disappeared in about 1 minute.

The fourth attempt at the Bluegill test was launched on a Thor missile on 25 October Johnston Island time.

It resulted in a successful detonation of a submegaton nuclear warhead at about one minute before midnight, local time the official Coordinated Universal Time was on 26 October It was officially reported as being in the submegaton range meaning more than kilotons but less than one megaton , and most observers of the U.

Since all of the Operation Fishbowl tests were planned to occur during the night, the potential for eyeburn, especially for permanent retinal damage, was an important consideration at all levels of planning.

Much research went into the potential eyeburn problem. One of the official reports for the project stated that, for the altitudes planned for the Bluegill, Kingfish and Checkmate tests, "the thermal-pulse durations are of the same order of magnitude or shorter than the natural blink period which, for the average person, is about milliseconds.

Furthermore, the atmospheric attenuation is normally much less for a given distance than in the case of sea-level or near-sea-level explosions.

Consequently, the eye-damage hazard is more severe. Two cases of retinal damage did occur with military personnel on Johnston Island during the ' Bluegill Triple Prime test.

Neither individual had his protective goggles in place at the instant of the detonation. The lesion diameters were 0.

Both individuals noted immediate visual disturbances, but neither was incapacitated. There had been concern that eyeburn problems might occur during the earlier Starfish Prime test, since the countdown was rebroadcast by radio stations in Hawaii, and many civilians would be watching the thermonuclear detonation as it occurred, [10] but no such problems in Hawaii were reported.

The Kingfish detonation occurred at Johnston Island time on 1 November and was the fourth successful detonation of the Fishbowl series. It was officially reported only as being a submegaton explosion meaning in the range of more than kilotons, but less than a megaton , but most independent observers believe that it used the same kiloton warhead as the Bluegill Triple Prime test, [23] although one report by the U.

As with the other Fishbowl tests, a number of small rockets with various scientific instrumentation were launched from Johnson Island to monitor the effects of the high-altitude explosion.

In the case of the Kingfish test, 29 rockets were launched from Johnston Island in addition to the Thor rocket carrying the nuclear warhead. According to the official report, at the time of the Kingfish detonation, "Johnston Island observers saw a yellow-white, luminous circle with intense purple streamers for the first minute.

Some of the streamers displayed what appeared to be a rapid twisting motion at times. A large pale-green patch appeared somewhat south of the burst and grew, becoming the dominant visible feature after 5 minutes.

At Oahu a bright flash was observed and after about 10 seconds a great white ball appeared to rise slowly out of the sea and was visible for about 9 minutes.

After most of the electromagnetic pulse measurements on Starfish Prime had failed because the EMP was so much larger than expected, extra care was taken to obtain accurate EMP measurements on the Bluegill Triple Prime and Kingfish tests.

Prompt gamma ray output measurements on these later tests were also carefully obtained so that a new theory of the mechanism for high-altitude EMP could be developed and confirmed.

That new theory about the generation of nuclear EMP was developed by Los Alamos physicist Conrad Longmire in , and it is the high-altitude nuclear EMP theory that is still used today.

In addition, an uninvited observation ship from the Soviet Union was stationed near Johnston Island for the test and another Soviet scientific expeditionary ship was located in the southern conjugate region, [14] permanent features of all future oceanic nuclear testing.

After the Starfish Prime detonation, bright auroras were observed in the detonation area as well as in the southern conjugate region on the other side of the equator from the detonation.

According to one of the first technical reports, "The visible phenomena due to the burst were widespread and quite intense; a very large area of the Pacific was illuminated by the auroral phenomena, from far south of the south magnetic conjugate area Tongatapu through the burst area to far north of the north conjugate area French Frigate Shoals.

At twilight after the burst, resonant scattering of light from lithium and other debris was observed at Johnston and French Frigate Shoals for many days confirming the longtime presence of debris in the atmosphere.

An interesting side effect was that the Royal New Zealand Air Force was aided in anti-submarine maneuvers by the light from the bomb. All of these satellites failed completely within several months of the Starfish detonation.

The report, entitled "Collateral Damage to Satellites from an EMP Attack," discusses in great detail the satellite damage caused by the Starfish Prime artificial radiation belts as well as other historical nuclear events that caused artificial radiation belts and their effects on many satellites that were then in orbit.

The same report also projects the effects of one or more present-day high altitude nuclear explosions upon the formation of artificial radiation belts and the probable resulting effects on satellites that were in orbit as of the year On July 25, , a second attempt was made to launch the Bluegill device, but ended in disaster when the Thor suffered a stuck valve preventing the flow of LOX to the combustion chamber.

The engine lost thrust and unburned RP-1 spilled down into the hot thrust chamber, igniting and starting a fire around the base of the missile.

With the Thor engulfed in flames, the Range Safety Officer sent the destruct command, which split the rocket and ruptured both fuel tanks, completely destroying the missile and badly damaging the launch pad.

The warhead charges also exploded asymmetrically and sprayed the area with the moderately radioactive core materials. Although there was little danger of an accidental nuclear explosion, the destruction of the nuclear warhead on the launch pad caused contamination of the area by alpha-emitting core materials.

Burning rocket fuel, flowing through the cable trenches, caused extensive chemical contamination of the trenches and the equipment associated with the cabling in the trenches.

The radioactive contamination on Johnston Island was determined to be a major problem, and it was necessary to decontaminate the entire area before the badly damaged launch pad could be rebuilt.

Operation Fishbowl test operations stopped after the disastrous failure of Bluegill Prime , and most of the personnel not directly involved in the radioactive cleanup and launch pad rebuild on Johnston Island returned to their home stations to await the resumption of tests.

The Urraca event was canceled to avoid further damage to satellites and three new shots were added. After a pause of nearly three months, Operation Fishbowl was ready to continue, beginning with another attempt at the Bluegill test.

Eighty-two days after the failure of Bluegill Prime , about 30 minutes before midnight on the night of October 15, , local Johnston Island time October 16 UTC , another attempt was made at the Bluegill test.

The Thor missile malfunctioned and began tumbling out of control about 85 seconds after launch, and the range safety officer ordered the destruction of the missile and its nuclear warhead about 95 seconds after launch.

It was reported that the yield and burst altitude were very close to those desired, but according to most official documents the exact nuclear yield remains classified.

It is reported in the open literature as simply being less than 20 kilotons. One report by the U. It was reported that, "Observers on Johnston Island saw a green and blue circular region surrounded by a blood-red ring formed overhead that faded in less than 1 minute.

Blue-green streamers and numerous pink striations formed, the latter lasting for 30 minutes. Observers at Samoa saw a white flash, which faded to orange and disappeared in about 1 minute.

The fourth attempt at the Bluegill test was launched on a Thor missile on October 25, Johnston Island time. It resulted in a successful detonation of a submegaton nuclear warhead at about one minute before midnight, local time the official Coordinated Universal Time was on October 26, It was officially reported as being in the submegaton range meaning more than kilotons but less than one megaton , and most observers of the U.

Since all of the Operation Fishbowl tests were planned to occur during the night, the potential for eyeburn, especially for permanent retinal damage, was an important consideration at all levels of planning.

Much research went into the potential eyeburn problem. One of the official reports for the project stated that, for the altitudes planned for the Bluegill, Kingfish and Checkmate tests, "the thermal-pulse durations are of the same order of magnitude or shorter than the natural blink period which, for the average person, is about milliseconds.

Furthermore, the atmospheric attenuation is normally much less for a given distance than in the case of sea-level or near-sea-level explosions.

Consequently, the eye-damage hazard is more severe. Two cases of retinal damage did occur with military personnel on Johnston Island during the Bluegill Triple Prime test.

Neither individual had his protective goggles in place at the instant of the detonation. The lesion diameters were 0. Both individuals noted immediate visual disturbances, but neither was incapacitated.

There had been concern that eyeburn problems might occur during the earlier Starfish Prime test, since the countdown was rebroadcast by radio stations in Hawaii, and many civilians would be watching the thermonuclear detonation as it occurred, [9] but no such problems in Hawaii were reported.

The Kingfish detonation occurred at Johnston Island time on November 1, and was the fourth successful detonation of the Fishbowl series.

It was officially reported only as being a submegaton explosion meaning in the range of more than kilotons, but less than a megaton , but most independent observers believe that it used the same kiloton warhead as the Bluegill Triple Prime test, [22] although one report by the U.

As with the other Fishbowl tests, a number of small rockets with various scientific instrumentation were launched from Johnson Island to monitor the effects of the high-altitude explosion.

In the case of the Kingfish test, 29 rockets were launched from Johnston Island in addition to the Thor rocket carrying the nuclear warhead.

According to the official report, at the time of the Kingfish detonation, "Johnston Island observers saw a yellow-white, luminous circle with intense purple streamers for the first minute.

Some of the streamers displayed what appeared to be a rapid twisting motion at times. A large pale-green patch appeared somewhat south of the burst and grew, becoming the dominant visible feature after 5 minutes.

At Oahu a bright flash was observed and after about 10 seconds a great white ball appeared to rise slowly out of the sea and was visible for about 9 minutes.

After most of the electromagnetic pulse measurements on Starfish Prime had failed because the EMP was so much larger than expected, extra care was taken to obtain accurate EMP measurements on the Bluegill Triple Prime and Kingfish tests.

Prompt gamma ray output measurements on these later tests were also carefully obtained so that a new theory of the mechanism for high-altitude EMP could be developed and confirmed.

That new theory about the generation of nuclear EMP was developed by Los Alamos physicist Conrad Longmire in , and it is the high-altitude nuclear EMP theory that is still used today.

As of the beginning of , the EMP waveforms and prompt gamma radiation outputs for Bluegill Triple Prime and Kingfish remain classified.

An unclassified report, however, confirms that these measurements were successfully made and that a subsequent theory which is the one now used was developed which describes the mechanism by which the high-altitude EMP is generated.

That new theory does give results which are consistent with both the Bluegill Triple Prime and Kingfish data. It was launched on a Nike-Hercules missile, and detonated at a lower altitude than the other Fishbowl tests.

Although it was officially one of the Operation Fishbowl tests, it is sometimes not listed among high-altitude nuclear tests because of its lower detonation altitude.

The nuclear yield was reported in most official documents only as being less than 20 kilotons. Even with high-density goggles, the burst was too bright to view, even for a few seconds.

A distinct thermal pulse was also felt on the bare skin. A yellow-orange disc was formed, which transformed itself into a purple doughnut. A glowing purple cloud was faintly visible for a few minutes.

Seven rockets carrying scientific instrumentation were launched from Johnston Island in support of the Tightrope test, which was the final atmospheric test conducted by the United States.

From Wikipedia, the free encyclopedia. Operation Fishbowl Starfish Prime 1. Main article: Starfish Prime. Word translations into English in parentheses unless the name is a proper noun.

A dash followed by a number indicates a member of a salvo event. The US also sometimes named the individual explosions in such a salvo test, which results in "name1 — 1 with name2 ".

If test is canceled or aborted, then the row data like date and location discloses the intended plans, where known.

If the result is earlier than , add 24 hours and subtract 1 from the day; if it is or later, subtract 24 hours and add 1 to the day.

Historical time zone data obtained from the IANA time zone database. Some locations are extremely accurate; others like airdrops and space blasts may be quite inaccurate.

No number or units indicates the value is unknown, while "0" means zero. Sorting on this column is by elevation and height added together.

Sealed shaft and tunnel are underground, and remained useful under the PTBT. Intentional cratering tests are borderline; they occurred under the treaty, were sometimes protested, and generally overlooked if the test was declared to be a peaceful use.

This category of information is often not officially disclosed. A ton of TNT equivalent is defined as 4. The measured species is only iodine if mentioned, otherwise it is all species.

No entry means unknown, probably none if underground and "all" if not; otherwise notation for whether measured on the site only or off the site, where known, and the measured amount of radioactivity released.

Nuclear Weapon Archive. Retrieved January 18, Page Report ADA November Chapter 2, sections 2. United States Department of Defense. Operation Dominic I.

Report DNA F. First published as an unclassified document on February 1, Archived from the original PDF on August 23, Retrieved January 12, June Fish Bowl Series.

Debris Expansion Experiment.

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